• Главная
  • INFORMATION TRANSMISSION METHOD AND APPARATUS, AND TERMINAL AND NETWORK DEVICE

INFORMATION TRANSMISSION METHOD AND APPARATUS, AND TERMINAL AND NETWORK DEVICE

Реферат: Provided are an information transmission method and apparatus, and a terminal, and a network device. The method includes a terminal sending a first Radio Resource Control (RRC) message to a first node and receiving a second RRC message sent by the first node. The second RRC message carries configuration information of a second node. The method also includes the terminal determining, according to a locally stored measurement result, whether the second node meets a target requirement. The method further includes if the second node does not meet the target requirement, the terminal carrying first indication information in a third RRC message sent to the first node. The first indication information is used for indicating that the second node is not accepted by the terminal.

Заявка: 1. A method for information transmission , comprising:sending, by a terminal, a first radio resource control (RRC) message to a first node, and receiving, by the terminal, a second RRC message sent by the first node, wherein the second RRC message carries configuration information of a second node; anddetermining, by the terminal, whether the second node meets a target requirement according to a locally stored measurement result, and when the second node does not meet the target requirement, carrying, by the terminal, first indication information in a third RRC message sent to the first node, wherein the first indication information is used to indicate that the second node is not accepted by the terminal.2. The method according to claim 1 , whereinthe second RRC message further carries a first measurement threshold; andthe determining, by the terminal, whether the second node meets the target requirement according to the locally stored measurement result comprises:determining, by the terminal, whether the second node meets the target requirement according to the locally stored measurement result and the first measurement threshold.3. The method according to claim 2 , wherein the determining claim 2 , by the terminal claim 2 , whether the second node meets the target requirement according to the locally stored measurement result and the first measurement threshold comprises:determining that the second node meets the target requirement if the measurement result of the second node is greater than or equal to the first measurement threshold; anddetermining that the second node does not meet the target requirement if the measurement result of the second node is less than the first measurement threshold.4. The method according to claim 1 , further comprising:releasing, by the terminal, the configuration information of the second node when the second node does not meet the target requirement; andcorrespondingly, the first indication information is further used to indicate the terminal to release the configuration information of the second node.5. The method according to claim 1 , wherein the terminal is a terminal configured with a dual-connection (DC) mode claim 1 , the first node is a target master node claim 1 , and the second node is an original secondary node claim 1 , configuration of the original secondary node being stored on a first node side claim 1 , or the second node is a new secondary node re-determined by the first node.6. The method according to claim 1 , wherein claim 1 ,the first RRC message is an RRC connection resume request message, the second RRC message is an RRC connection resume response message, and the third RRC message is an RRC connection resume complete message; or,the first RRC message is an RRC reconfiguration request message, the second RRC message is an RRC reconfiguration response message, and the third RRC message is an RRC reconfiguration complete message.7. A method for information transmission claim 1 , comprising:receiving, by a first node, a first RRC message sent by a terminal, and sending, by the first node, a second RRC message to the terminal, wherein the second RRC message carries configuration information of a second node;receiving, by the first node, a third RRC message sent by the terminal, and determining, by the first node, whether the third RRC message carries first indication information, wherein the first indication information is used to indicate that the second node is not accepted by the terminal; andreleasing, by the first node, the configuration information of the second node when the third RRC message carries the first indication information.8. The method according to claim 7 , whereinthe second RRC message further carries a first measurement threshold; andthe first measurement threshold is used by the terminal to determine whether the second node meets a target requirement in combination with a measurement result of the second node.9. The method according to claim 7 , wherein the first indication information is further used to indicate the terminal to release the configuration information of the second node.10. The method according to claim 7 , further comprising:when there is a service demand on a second node side, carrying, by the first node, configuration information of a third node in a fourth RRC message sent to the terminal, or, configuring, by the first node, a bearer on the second node side as a bearer on the first node side.11. The method according to claim 10 , wherein the third node is a new secondary node re-determined by the first node claim 10 , and the third node is different from the second node.12. The method according to claim 7 , wherein the terminal is a terminal configured with a DC mode claim 7 , the first node is a target master node claim 7 , and the second node is an original secondary node claim 7 , configuration of the original secondary node being stored on the first node side claim 7 , or the second node is a new secondary node re-determined by the first node.13. The method according to claim 7 , whereinthe first RRC message is an RRC connection resume request message, the second RRC message is an RRC connection resume response message, and the third RRC message is an RRC connection resume complete message; orthe first RRC message is an RRC reconfiguration request message, the second RRC message is an RRC reconfiguration response message, and the third RRC message is an RRC reconfiguration complete message.14. A terminal claim 7 , comprising:a processor; anda memory,wherein the memory is configured to store a computer program, and the processor is configured to call and run the computer program stored in the memory to:send a first RRC message to a first node;receive a second RRC message sent by the first node, wherein the second RRC message carries configuration information of a second node;determine whether the second node meets a target requirement according to a locally stored measurement result; andwhen the second node does not meet the target requirement, carry first indication information in a third RRC message sent to the first node, wherein the first indication information is used to indicate that the second node is not accepted by the terminal.15. The terminal according to claim 14 , whereinthe second RRC message further carries a first measurement threshold; andthe processor is further configured to determine whether the second node meets the target requirement according to the locally stored measurement result and the first measurement threshold.16. The terminal according to claim 15 , whereinthe processor is further configured to determine that the second node meets the target requirement if the measurement result of the second node is greater than or equal to the first measurement threshold; anddetermine that the second node does not meet the target requirement if the measurement result of the second node is less than the first measurement threshold.17. The terminal according to claim 14 , wherein the processor is further configured to:release the configuration information of the second node when the second node does not meet the target requirement; andcorrespondingly, the first indication information is further used to indicate the terminal to release the configuration information of the second node.18. The terminal according to claim 14 , wherein the terminal is a terminal configured with a DC mode claim 14 , the first node is a target master node claim 14 , and the second node is an original secondary node claim 14 , configuration of the original secondary node being stored on first node side claim 14 , or the second node is a new secondary node re-determined by the first node.19. The terminal according to claim 14 , whereinthe first RRC message is an RRC connection resume request message, the second RRC message is an RRC connection resume response message, and the third RRC message is an RRC connection resume complete message; orthe first RRC message is an RRC reconfiguration request message, the second RRC message is an RRC reconfiguration response message, and the third RRC message is an RRC reconfiguration complete message.

Описание: This application is a continuation of International Application No. PCT/CN2018/108223, filed Sep. 28, 2018, the entire contents of which are incorporated herein by reference.The embodiments of the present disclosure relate to the field of mobile communication technology, and more specifically, to an information transmission method and apparatus, a terminal, and a network device.In order to satisfy people's pursuits of rate, delay, high-speed mobility, and energy efficiency of service, as well as diversity and complexity of the service in the future life, the 3rd Generation Partnership Project (3GPP) International Standards Organization began to develop the 5Generation (5G) mobile communication technology.In order to support a higher service rate demand, the network side supports Dual Connectivity (DC), or Multi Connectivity (MC). However, for terminals that support the DC/MC mode, how to configure a Secondary Node (SN) in a Radio Resource Control (RRC) connection establishment procedure or an RRC connection resume procedure to make the configuration of SN fast and effective is a problem that needs to be considered.The embodiments of the present disclosure provide an information transmission method and apparatus, a terminal, and a network device.The information transmission method provided by an embodiment of the present disclosure includes sending, by a terminal, a first radio resource control (RRC) message to a first node, and receiving, by the terminal, a second RRC message sent by the first node, wherein the second RRC message carries configuration information of a second node; and determining, by the terminal, whether the second node meets a target requirement according to a locally stored measurement result, and when the second node does not meet the target requirement, carrying, by the terminal, first indication information in a third RRC message sent to the first node, wherein the first indication information is used to indicate that the second node is not accepted by the terminal.The information transmission method provided by an embodiment of the present disclosure includes receiving, by a first node, a first RRC message sent by a terminal, and sending, by the first node, a second RRC message to the terminal, wherein the second RRC message carries configuration information of a second node; receiving, by the first node, a third RRC message sent by the terminal, and determining, by the first node, whether the third RRC message carries first indication information, wherein the first indication information is used to indicate that the second node is not accepted by the terminal; and releasing, by the first node, the configuration information of the second node when the third RRC message carries the first indication information.An information transmission apparatus provided by an embodiment of the present disclosure is applied to a terminal, and the apparatus includes a first sending unit configured to send a first RRC message to a first node; a receiving unit, configured to receive a second RRC message sent by the first node, wherein the second RRC message carries configuration information of a second node; a determining unit configured to determine whether the second node meets a target requirement according to a locally stored measurement result; and a second sending unit, configured to, when the second node does not meet the target requirement, carry first indication information in a third RRC message sent to the first node, wherein the first indication information is used to indicate that the second node is not accepted by the terminal.An information transmission apparatus provided by an embodiment of the present disclosure is applied to a first node, and the apparatus includes a first receiving unit configured to receive a first RRC message sent by a terminal; a first sending unit configured to send a second RRC message to the terminal, wherein the second RRC message carries configuration information of a second node; a second receiving unit configured to receive a third RRC message sent by the terminal, and determine whether the third RRC message carries first indication information, wherein the first indication information is used to indicate that the second node is not accepted by the terminal; and a releasing unit configured to release the configuration information of the second node when the third RRC message carries the first indication information.A terminal provided by an embodiment of the present disclosure includes a processor and a memory. The memory is configured to store a computer program, and the processor is configured to call and run the computer program stored in the memory, and execute the information transmission method above.A network device provided by an embodiment of the present disclosure includes a processor and a memory. The memory is configured to store a computer program, and the processor is configured to call and run the computer program stored in the memory and execute the information transmission method above.A chip provided by an embodiment of the present disclosure is configured to implement the information transmission method above.Specifically, the chip includes a processor configured to call and run a computer program from a memory, so that a device installed with the chip executes the information transmission method above.A computer-readable storage medium provided by an embodiment of the present disclosure is configured to store a computer program, where the computer program enables a computer to execute the information transmission method above.A computer program product provided by an embodiment of the present disclosure includes a computer program instruction, where the computer program instruction enables a computer to execute the information transmission method above.A computer program is provided by an embodiment of the present disclosure, where the computer program enables a computer to execute the information transmission method above when running on the computer.Through the above technical solutions, it is determined whether the SN blindly configured on the network side meets the target requirement (i.e., whether it can be used) by a terminal feedback method, so that a blind configuration of the SN is fast and effective.The technical solutions in the embodiments of the present disclosure will be described below in combination with the drawings in the embodiments of the present disclosure. Obviously, the described embodiments are part of the embodiments of the present disclosure, rather than all of them. Based on the embodiments of the present disclosure, all other embodiments obtained by those of ordinary skill in the art without creative work fall within the protection scope of the present disclosure.The technical solutions of the embodiments of the present disclosure can be applied to various communication systems, such as a Global System of Mobile communication (GSM) system, a Code Division Multiple Access (CDMA) system, a Wideband Code Division Multiple Access (WCDMA) system, General Packet Radio Service (GPRS), a Long Term Evolution (LTE) system, an LTE Frequency Division Duplex (FDD) System, LTE Time Division Duplex (TDD), a Universal Mobile Telecommunication System (UMTS), a Worldwide Interoperability for Microwave Access (WiMAX) communication system or a 5G system, etc.Exemplarily, a communication system applied in an embodiment of the present disclosure is shown in . The communication system may include a network device , and the network device may be a device that communicates with a terminal (or called a communication terminal or a terminal). The network device may provide communication coverage for a specific geographic area and may communicate with the terminal located in the coverage area. Alternatively, the network device may be a Base Transceiver Station (BTS) in the GSM system or the CDMA system, or a NodeB (NB) in the WCDMA system, or an Evolutional Node B (eNB or eNodeB) in the LTE system, or a wireless controller in Cloud Radio Access Network (CRAN), or the network device may be a mobile switching center, a relay station, an access point, a vehicle-mounted device, a wearable device, a hub, a switch, a bridge, a router, a network side device in 5G network, or a network device in future evolving Public Land Mobile Network (PLMN), etc.The communication system also includes at least one terminal located within the coverage area of the network device . The “Terminal” as used herein includes, but is not limited to, a connection via a wired line, such as a connection via Public Switched Telephone Networks (PSTN), a Digital Subscriber Line (DSL), a digital cable, and a direct cable; and/or another data connection/network; and/or via a wireless interface, such as cellular network, Wireless Local Area Network (WLAN), digital television network such as DVB-H network, satellite network and an AM-FM broadcast transmitter; and/or an apparatus of another terminal set to receive/send communication signals; and/or an Internet of things (TOT) device. The terminal set to communicate through the wireless interface may be referred to as “a wireless communication terminal,” “a wireless terminal,” or “a mobile terminal.” Examples of the mobile terminal include, but is not limited to, a satellite or cellular phone; a Personal Communications System (PCS) terminal that may combine a cellular radiophone with data processing, fax, and data communication capabilities; a PDA that may include a radiophone, a pager, an Internet/Intranet access, a web browser, a note, a calendar, and/or a Global Positioning System (GPS) receiver; and a conventional laptop and/or palmtop receiver or other electronic devices including a radiophone transceiver. The terminal may refer to an access terminal, User Equipment (UE), a subscriber unit, a subscriber station, a mobile station, a mobile platform, a remote station, a remote terminal, a mobile device, a user terminal, a terminal, a wireless communication device, a user agent or a user apparatus. The access terminal may be the cellular phone, a cordless telephone, a Session Initiation Protocol (SIP) phone, a Wireless Local Loop (WLL) station, the Personal Digital Assistant (PDA), a handheld device, a computing device having wireless connection functions or other processing device connected to a wireless modem, a vehicle-mounted device, a wearable device, a terminal in the 5G network or a terminal in the future evolving PLMN, etc.Alternatively, Device to Device (D2D) communication may be performed between the terminals .Alternatively, the 5G system or the 5G network may also be referred to as a New Radio (NR) system or NR network.illustrates schematically one network device and two terminals. Alternatively, the communication system may include a plurality of network devices, and other number of terminals may be included within the coverage of each network device, which are not limited in the embodiments of the present disclosure.Alternatively, the communication system may also include a network controller, a mobile management entity, and other network entities, which are not limited in the embodiments of the present disclosure.It should be understood that a device with communication functions in the network/system in the embodiments of the present disclosure may be referred to as a communication device. Taking the communication system shown in as an example, the communication device may include the network device and the terminal with communication functions, and the network device and the terminal may be specific devices described above, which will not be repeated here; and the communication device may also include other devices in the communication system , such as the network controller, the mobile management entity and other network entities, which are not limited in the embodiments of the present disclosure.It should be understood that the terms “system” and “network” herein are often used interchangeably herein. The term “and/or” herein is only used to describe an association relationship between associated objects, which represents that there may be three kinds of relationships. For example, A and/or B may represent three situations: A exists alone, A and B exist at the same time, and B exists alone. In addition, the character “/” herein generally represents that pre and post associated objects are in an “or” relationship.The technical solutions of the embodiments of the present disclosure are mainly applied to a 5G mobile communication system. The technical solutions of the embodiments of the present disclosure are not limited to the 5G mobile communication system, but can also be applied to other types of mobile communication systems. The main application scenarios of the 5G mobile communication technology are Enhance Mobile Broadband (eMBB), Ultra Reliable Low Latency Communication (URLLC), and massive Machine Type Communication (mMTC). The main application scenarios in the 5G mobile communication system will be described below:1) eMBB scenario: the eMBB aims at obtaining multimedia content, service, and data for the user, and its service demand is growing very rapidly. Since the eMBB may be deployed in different scenarios, such as interior, an urban area, and a rural area, etc., its service capability and demand are quite different, and therefore it is necessary to analyze the service in combination with specific deployment scenarios.2) URLLC scenario: typical applications of the URLLC include industrial automation, power automation, telemedicine operation, and traffic safety guarantee, etc.3) mMTC scenario: typical features of the URLLC include high connection density, small data volume, low cost and long service life of a delay insensitive service and module, etc.In the 5G network environment, in order to reduce air interface signaling, quickly resume (recovery) a wireless connection, and quickly resume a data service, a new RRC state is defined, that is, a RRC INACTIVE state. This state is different from a RRC IDLE state and a RRC CONNECTED state.Three RRC states in the 5G network environment will be described below:1) the RRC IDLE state: mobility is UE-based cell selection reselection, paging is triggered by CN, and a paging area is configured by the CN. There is no UE AS context on base station-side. There is no RRC connection.2) the RRC CONNECTED state: there is the RRC connection, and a base station and the UE have the UE AS context. The network side knows that a location of the UE is of a specific cell level. The mobility is mobility controlled by the network side. Unicast data can be transmitted between the UE and the base station.3) the RRC INACTIVE state: the mobility is the UE-based cell selection reselection, there is a connection between the CN and RAN, the UE AS context exists on a certain base station, the paging is triggered by the RAN, the paging area based on the RAN is managed by the RAN, and the network side knows that the location of the UE is based on a paging area level of the RAN.When the User Equipment (UE) is in the RRC INACTIVE state, the network side may configure the paging area of the Radio Access Network (RAN) for the UE through dedicated signaling, and the paging area of the RAN may be one or more cells. When the UE moves in the area, it does not need to notify the network side, and it follows mobility behavior under idle condition, that is, a cell selection reselection principle. When the UE moves out of the paging area configured by the RAN, it may trigger the UE to recover the RRC connection and re-obtain the paging area configured by the RAN. When the UE has downlink data arriving, the base station (such as gNB) that keeps the connection between the RAN and the Core Network (CN) for the UE may trigger all cells in the paging area of the RAN to send paging messages to the UE, so that the UE in the INACTIVCE state can recover the RRC connection and receive data.Therefore, there are the following three situations for the UE to enter the RRC CONNECTED state from the INACTIVE state.In the first situation, when the UE has the downlink data arriving, the network side initiates the paging on RAN side to impel the UE to enter the connection state.In the second situation, the UE itself initiates RAN location area update, such as periodic RAN location update or cross-area location update.In the third situation, the UE has a demand for uplink data transmission, which impels the UE to enter the connection state.is a schematic diagram of an RRC connection resume procedure. As shown in , the RRC connection resume procedure includes the following processes.In step : the UE is in the INACTIVE state and needs to recover the RRC connection.In step : the UE sends a preamble to the gNB.In step : the gNB sends a Random Access Response (RAR) to the UE.In step : the UE sends an RRC resume request message (RRC Connection Resume Request) to the gNB.In step : the gNB asks for UE context information from an anchor gNB.In step : the gNB sends an RRC connection resume message (RRC Connection Resume) to the UE.In step : the UE enters the RRC CONNECTED state.In step : the UE sends an RRC connection resume complete message (RRC Connection Resume Complete) to the gNB.is a first schematic flowchart of an information transmission method provided by an embodiment of the present disclosure. As shown in , the information transmission method includes the following steps.In step : a terminal sends a first RRC message to a first node and receives a second RRC message sent by the first node, where the second RRC message carries configuration information of a second node.In the embodiment of the present disclosure, the terminal may be any device that can communicate with the network, such as a mobile phone, a tablet computer, a vehicle-mounted terminal, and a notebook.In the embodiment of the present disclosure, the terminal is a terminal configured with a DC mode or an MC mode, the first node is a target master node, and the second node is an original secondary node stored on the first node side or a new secondary node re-determined by the first node.In the embodiment of the present disclosure, the configuration information of the second node includes bearer configuration information and physical layer resource configuration information.In an RRC connection resume procedure, the first RRC message is an RRC connection resume request message, the second RRC message is an RRC connection resume response message, and the third RRC message involved in the following step is an RRC connection resume complete message.In an RRC connection establishment procedure, the first RRC message is an RRC reconfiguration request message, the second RRC message is an RRC reconfiguration response message, and the third RRC message involved in the following step is an RRC reconfiguration complete message.For example, the UE configured with the DC mode sends the RRC connection resume request message to a target MN in the INACTIVE state, and then the target MN configures the UE with SN and SN configuration information. Here, the SN configuration information includes bearer configuration information and physical layer resource configuration information on the SN side. The SN configured by the target MN for the UE may be an original SN stored on the target MN side in the INACTIVE state, or it may be an SN blindly configured by the target MN. Then, the target MN sends the SN configuration information to the UE in the RRC connection resume response message.For another example, the UE configured with the DC mode sends the RRC reconfiguration request message to the target MN in the INACTIVE state, and then the target MN configures the UE with the SN and the SN configuration information. Here, the SN configuration information includes the bearer configuration information and the physical layer resource configuration information on the SN side. The SN configured by the target MN for the UE may be the original SN stored on the target MN side in the INACTIVE state, or it may be the SN blindly configured by the target MN. Then, the target MN sends the SN configuration information to the UE in the RRC reconfiguration response message.It should be understood that the above-mentioned first RRC message is MSG3, and the second RRC message is MSG4.Alternatively, the second RRC message further carries a first measurement threshold.In step : the terminal determines whether the second node meets a target requirement according to a locally stored measurement result, and when the second node does not meet the target requirement, the terminal carries first indication information in a third RRC message sent to the first node, where the first indication information is used to indicate that the second node is not accepted by the terminal.In the embodiment of the present disclosure, 1) if the second RRC message does not carry the first measurement threshold, the terminal determines whether the second node meets the target requirement according to the locally stored measurement result. 2) If the second RRC message carries the first measurement threshold, the terminal determines whether the second node meets the target requirement according to the locally stored measurement result and the first measurement threshold. Further, if the measurement result of the second node is greater than or equal to the first measurement threshold, it is determined that the second node meets the target requirement; and if the measurement result of the second node is less than the first measurement threshold, it is determined that the second node does not meet the target requirement.For the above 1), if there is no first measurement threshold in the MSG4, the UE obtains the configuration information of the SN (including PSCell configuration information) after receiving the MSG4, and the UE determines whether the SN is good enough (i.e., whether it meets the target requirement) according to the locally stored measurement result. Here, how the UE determines whether the SN meets the target requirement depends on the realization of the UE. For example, the UE determines whether the SN meets the target requirement according to the quality of the SN.For the above 2), if there is the first measurement threshold in the MSG , the UE obtains the configuration information of the SN (including the PSCell configuration information) after receiving the MSG4, and the UE determines whether the SN is good enough (that is, whether it meets the target requirement) according to the locally stored measurement result and the first measurement threshold. For example, if the measurement result of the PSCell is greater than or equal to the first measurement threshold, the SN meets the target requirement, and if the measurement result of the PSCell is less than the first measurement threshold, the SN does not meet the target requirement.In the above solution, if the SN meets the target requirement, the UE considers that the SN can be used; and if the SN does not meet the target requirement, the UE considers that the SN cannot be used, and a new SN needs to be configured by the target MN.In the above solution, if the UE determines that the SN configured by the target MN does not meet the target requirement, it sends an indication to the network side in the third RRC message (i.e., MSG5) to indicate that the SN is not accepted by the UE. In the RRC connection resume procedure, the third RRC message is the RRC connection resume complete message, and in the RRC connection establishment procedure, the third RRC message is the RRC reconfiguration complete message.In the embodiment of the present disclosure, if the second node does not meet the target requirement, the terminal releases the second node and the configuration information of the second node, and correspondingly, the first indication information is also used to indicate the terminal to release the configuration information of the second node. For example, if the SN configured by the target MN does not meet the target requirement, the UE releases the SN and releases the bearer configuration information and the physical layer resource configuration information on the SN side. Further, after receiving the MSG , the target MN releases the SN if the above indication is included in the MSG . According to the situation, the target MN decides whether to initiate the RRC connection reconfiguration message to configure a new SN and configuration information (including bearer configuration information and physical layer resource configuration information) on the SN side. For example, if a bearer on the SN side has no service demand, the target MN can release the bearer on the SN side directly; and if the bearer on the SN side has the service demand, the target MN may configure a new SN and SN configuration information, or the target MN may configure the bearer on the SN side as a bearer on the MN side. Here, when configuring the new SN, the target MN may configure it based on a measurement report reported by the UE, so that the SN that can be configured may meet the requirement of the UE; that is, it can be used by the UE.is a second schematic flowchart of an information transmission method provided by an embodiment of the present disclosure. As shown in , the information transmission method includes the following steps.In step : a first node receives a first RRC message sent by a terminal and sends a second RRC message to the terminal, where the second RRC message carries configuration information of a second node.In the embodiment of the present disclosure, the terminal may be any device that can communicate with the network, such as a mobile phone, a tablet computer, a vehicle-mounted terminal, and a notebook.In the embodiment of the present disclosure, the terminal is a terminal configured with a DC mode or an MC mode, the first node is a target master node, and the second node is an original secondary node stored on the first node side or a new secondary node re-determined by the first node.In the embodiment of the present disclosure, the configuration information of the second node includes bearer configuration information and physical layer resource configuration information.In an RRC connection resume procedure, the first RRC message is an RRC connection resume request message, the second RRC message is an RRC connection resume response message, and the third RRC message involved in the following step is an RRC connection resume complete message.In an RRC connection establishment procedure, the first RRC message is an RRC reconfiguration request message, the second RRC message is an RRC reconfiguration response message, and the third RRC message involved in the following step is an RRC reconfiguration complete message.For example, the UE configured with the DC mode sends the RRC connection resume request message to a target MN in the INACTIVE state, and then the target MN configures the UE with an SN and SN configuration information. Here, the SN configuration information includes bearer configuration information and physical layer resource configuration information on SN side. The SN configured by the target MN for the UE may be an original SN stored on the target MN side in the INACTIVE state or may be an SN blindly configured by the target MN. Then, the target MN sends the SN configuration information to the UE in the RRC connection resume response message.For another example, the UE configured with the DC mode sends the RRC reconfiguration request message to the target MN in the INACTIVE state, and then the target MN configures the UE with the SN and the SN configuration information. Here, the SN configuration information includes the bearer configuration information and the physical layer resource configuration information on the SN side. The SN configured by the target MN for the UE may be the original SN stored on the target MN side in the INACTIVE state or may be the SN blindly configured by the target MN. Then, the target MN sends the SN configuration information to the UE in the RRC reconfiguration response message.It should be understood that the above-mentioned first RRC message is MSG3, and the second RRC message is MSG4.Alternatively, the second RRC message further carries a first measurement threshold.Alternatively, the second RRC message further carries a first measurement threshold; and the first measurement threshold is used by the terminal to determine whether the second node meets a target requirement in combination with a measurement result of the second node.In step : the first node receives a third RRC message sent by the terminal and determines whether the third RRC message carries first indication information, where the first indication information is used to indicate that the second node is not accepted by the terminal.In the embodiment of the present disclosure, the terminal determines whether the second node meets the target requirement according to a locally stored measurement result, and if the second node does not meet the target requirement, the terminal carries the first indication information in the third RRC message sent to the first node, the first indication information being used to indicate that the second node is not accepted by the terminal.In the embodiment of the present disclosure, 1) if the second RRC message does not carry the first measurement threshold, the terminal determines whether the second node meets the target requirement according to the locally stored measurement result. 2) If the second RRC message carries the first measurement threshold, the terminal determines whether the second node meets the target requirement according to the locally stored measurement result and the first measurement threshold. Further, if the measurement result of the second node is greater than or equal to the first measurement threshold, it is determined that the second node meets the target requirement; and if the measurement result of the second node is less than the first measurement threshold, it is determined that the second node does not meet the target requirement.For the above 1), if there is no first measurement threshold in the MSG4, the UE obtains the configuration information of the SN (including PSCell configuration information) after receiving the MSG4, and the UE determines whether the SN is good enough (i.e., whether it meets the target requirement) according to the locally stored measurement result. Here, how the UE determines whether the SN meets the target requirement depends on the realization of the UE. For example the UE determines whether the SN meets the target requirement according to the quality of the SN.For the above 2), if there is the first measurement threshold in the MSG , the UE obtains the configuration information of the SN (including the PSCell configuration information) after receiving the MSG4, and the UE determines whether the SN is good enough (that is, whether it meets the target requirement) according to the locally stored measurement result and the first measurement threshold. For example, if the measurement result of the PSCell is greater than or equal to the first measurement threshold, the SN meets the target requirement, and if the measurement result of the PSCell is less than the first measurement threshold, the SN does not meet the target requirement.In the above solution, if the SN meets the target requirement, the UE considers that the SN can be used; and if the SN does not meet the target requirement, the UE considers that the SN cannot be used, and a new SN needs to be configured by the target MN.In the above solution, if the UE determines that the SN configured by the target MN does not meet the target requirement, it sends an indication to the network side in the third RRC message (i.e., MSG5) to indicate that the SN is not accepted by the UE. In the RRC connection resume procedure, the third RRC message is the RRC connection resume complete message, and in the RRC connection establishment procedure, the third RRC message is the RRC reconfiguration complete message.In step : the first node releases the configuration information of the second node if the third RRC message carries the first indication information.In the embodiment of the present disclosure, if the second node does not meet the target requirement, the terminal releases the second node and the configuration information of the second node, and correspondingly, the first indication information is also used to indicate the terminal to release the configuration information of the second node. For example, if the SN configured by the target MN does not meet the target requirement, the UE releases the SN and releases the bearer configuration information and the physical layer resource configuration information on the SN side.In the embodiment of the present disclosure, if there is a service demand on the second node side, the first node carries configuration information of a third node in a fourth RRC message sent to the terminal, or the first node configures a bearer on the second node side as a bearer on the first node side. The third node is a new secondary node re-determined by the first node, and the third node is different from the second node.For example, after receiving the MSG , the target MN releases the SN if the above indication is included in the MSG . According to the situation, the target MN decides whether to initiate the RRC connection reconfiguration message to configure a new SN and configuration information (including bearer configuration information and physical layer resource configuration information) on the SN side. For example, if a bearer on the SN side has no service demand, the target MN may release the bearer on the SN side directly; and if the bearer on the SN side has the service demand, the target MN may configure a new SN and SN configuration information, or the target MN may configure the bearer on the SN side as a bearer on the MN side. Here, when configuring the new SN, the target MN may configure it based on a measurement report reported by the UE, so that the SN that can be configured may meet the requirement of the UE; that is, it can be used by the UE.is a first schematic structure composition diagram of an information transmission apparatus provided by an embodiment of the present disclosure, which is applied to a terminal. As shown in , the apparatus includes a first sending unit configured to send a first RRC message to a first node; a receiving unit configured to receive a second RRC message sent by the first node, where the second RRC message carries configuration information of a second node; a determining unit configured to determine whether the second node meets a target requirement according to a locally stored measurement result; and a second sending unit configured to, if the second node does not meet the target requirement, carry first indication information in a third RRC message sent to the first node, where the first indication information is used to indicate that the second node is not accepted by the terminal.In an embodiment, the second RRC message further carries a first measurement threshold.The determining unit is configured to determine whether the second node meets the target requirement according to the locally stored measurement result and the first measurement threshold.In an embodiment, the determining unit is configured to determine that the second node meets the target requirement if the measurement result of the second node is greater than or equal to the first measurement threshold; and determine that the second node does not meet the target requirement if the measurement result of the second node is less than the first measurement threshold.In an embodiment, the apparatus further includes a releasing unit configured to release the configuration information of the second node if the second node does not meet the target requirement; and correspondingly, the first indication information is further used to indicate the terminal to release the configuration information of the second node.In an embodiment, the terminal is a terminal configured with a DC mode, the first node is a target master node, and the second node is an original secondary node stored on the first node side or a new secondary node re-determined by the first node.In an embodiment, the first RRC message is an RRC connection resume request message, the second RRC message is an RRC connection resume response message, and the third RRC message is an RRC connection resume complete message; or,the first RRC message is an RRC reconfiguration request message, the second RRC message is an RRC reconfiguration response message, and the third RRC message is an RRC reconfiguration complete message.Those skilled in the art should understand that the relevant description of the above-mentioned information transmission apparatus in the embodiment of the present disclosure can be understood with reference to the relevant description of the information transmission method in the embodiment of the present disclosure.is a second schematic structure composition diagram of an information transmission apparatus provided by an embodiment of the present disclosure, which is applied to a first node. As shown in , the apparatus includes a first receiving unit configured to receive a first RRC message sent by a terminal; a first sending unit configured to send a second RRC message to the terminal, where the second RRC message carries configuration information of a second node; a second receiving unit , configured to receive a third RRC message sent by the terminal, and determine whether the third RRC message carries first indication information, where the first indication information is used to indicate that the second node is not accepted by the terminal; and a releasing unit , configured to release the configuration information of the second node when the third RRC message carries the first indication information.In an embodiment, the second RRC message further carries a first measurement threshold. The first measurement threshold is used by the terminal to determine whether the second node meets a target requirement in combination with a measurement result of the second node.In an embodiment, the first indication information is further used to indicate the terminal to release the configuration information of the second node.In an embodiment, the apparatus further includes a processing unit , configured to, if there is a service demand on the second node side, carry configuration information of a third node in a fourth RRC message sent to the terminal, or configure a bearer on the second node side as a bearer on the first node side.In an embodiment, the third node is a new secondary node re-determined by the first node, and the third node is different from the second node.In an embodiment, the terminal is a terminal configured with a DC mode, the first node is a target master node, and the second node is an original secondary node stored on the first node side or a new secondary node re-determined by the first node.In an embodiment, the first RRC message is an RRC connection resume request message, the second RRC message is an RRC connection resume response message, and the third RRC message is an RRC connection resume complete message; or the first RRC message is an RRC reconfiguration request message, the second RRC message is an RRC reconfiguration response message, and the third RRC message is an RRC reconfiguration complete message.Those skilled in the art should understand that the relevant description of the above-mentioned information transmission apparatus in the embodiment of the present disclosure can be understood with reference to the relevant description of the information transmission method in the embodiment of the present disclosure.is a schematic structure diagram of a communication device provided by an embodiment of the present disclosure. The communication device may be a terminal or a network device, the communication device shown in includes a processor , and the processor may call and run a computer program from a memory to implement the method in the embodiment of the present disclosure.Alternatively, as shown in , the communication device may further include a memory . The processor may call and run the computer program from the memory to implement the method in the embodiment of the present disclosure.The memory may be a separate device independent of the processor , or it may also be integrated in the processor .Alternatively, as shown in , the communication device may further include a transceiver , which may be controlled by the processor to communicate with other devices, and specifically, the transceiver may send information or data to other devices or receive information or data sent by other devices.The transceiver may include a transmitter and a receiver. The transceiver may further include an antenna, the number of which may be one or more.Alternatively, the communication device may specifically be the network device in the embodiments of the present disclosure, and the communication device may implement corresponding processes implemented by the network device in each method in the embodiments of the present disclosure, which will not be repeated here for the sake of brevity.Alternatively, the communication device may be the mobile terminal/the terminal in the embodiments of the present disclosure, and the communication device may implement corresponding processes implemented by the mobile terminal/the terminal in each method in the embodiments of the present disclosure, which will not be repeated here for the sake of brevity.is a schematic structure diagram of a chip in an embodiment of the present disclosure. The chip shown in includes a processor , and the processor may call and run a computer program from a memory to implement the method in the embodiments of the present disclosure.Alternatively, as shown in , the chip may further include a memory . The processor may call and run the computer program from the memory to implement the method in the embodiments of the present disclosure.The memory may be a separate device independent of the processor , or it may be integrated in the processor .Alternatively, the chip may further include an input interface . The processor may control the input interface to communicate with other devices or chips, and specifically, the input interface may obtain information or data sent by other devices or chips.Alternatively, the chip may also include an output interface . The processor may control the output interface to communicate with other devices or chips, and specifically, the output interface may output information or data to other devices or chips.Alternatively, the chip may be applied to the network device in the embodiments of the present disclosure, and the chip may implement corresponding processes implemented by the network device in each method in the embodiments of the present disclosure, which will not be repeated here for the sake of brevity.Alternatively, the chip may be applied to the mobile terminal/the terminal in the embodiments of the present disclosure, and the chip may implement corresponding processes implemented by the mobile terminal/the terminal in each method in the embodiments of the present disclosure, which will not be repeated here for the sake of brevity.It should be understood that the chip mentioned in the embodiments of the present disclosure may also be referred to as a system level chip, a system chip, a chip system or a system-on-chip, etc.is a schematic block diagram of a communication system provided by an embodiment of the present disclosure. As shown in , the communication system includes a terminal and a network device .The terminal may be used to implement corresponding functions implemented by the terminal in the above methods, and the network device may be used to implement corresponding functions implemented by the network device in the above methods, and will not be repeated here for the sake of brevity.It should be understood that the processor in the embodiments of the present disclosure may be an integrated circuit chip with signal processing capability. In the process of implementation, each step of the above method embodiments may be completed by integrated logic circuits of hardware or instructions in software form in the processor. The above processor may be a general purpose processor, a Digital Signal Processor (DSP), an Application Specific Integrated Circuit (ASIC), a Field Programmable Gate Array (FPGA) or other programmable logic devices, discrete gates or transistor logic devices, discrete hardware components. Each method, step and logic block diagram disclosed in the embodiments of the present disclosure may be implemented or executed. The general purpose processor may be a microprocessor processor, or the processor may be any conventional processor, etc. The steps combining with the methods disclosed in the embodiments of the present disclosure may be directly executed and completed by a hardware decoding processor or by the combination of hardware and software modules in a decoding processor. The software module can be located in a RAM, a flash memory, a read-only memory, a programmable read-only memory, or an electrically erasable programmable memory, a register and other mature storage medium in this field. The storage medium is located in the memory, and the processor reads information in the memory and completes the steps of the above methods combined with its hardware.It can be understood that the memory in the embodiments of the present disclosure may be a volatile memory or a non-volatile memory, or may include both the volatile memory and the non-volatile memory. Among them, the non-volatile memory may be the Read-Only Memory (ROM), the Programmable ROM (PROM), an Erasable PROM (EPROM), and the Electrically EPROM (EEPROM) or the flash memory. The volatile memory may be the Random Access Memory (RAM), which is used as an external cache. By way of exemplary but non-limiting description, many forms of the RAM are available, such as a Static RAM (SRAM), a Dynamic RAM (DRAM), a Synchronous DRAM (SDRAM), a Double Data Rate SDRAM (DDR SDRAM), an Enhanced SDRAM (ESDRAM), a Synchlink DRAM (SLDRAM) and a Direct Rambus RAM (DR RAM). It should be noted that the memories of the systems and the methods described herein are intended to include but not limited to these and any other suitable types of memories.It should be understood that the above memories are exemplary but non-limiting description. For example, the memory in the embodiments of the present disclosure may also be the static RAM (SRAM), the dynamic RAM (DRAM), the synchronous DRAM (SDRAM), the double data rate SDRAM (DDR SDRAM), the enhanced SDRAM (ESDRAM), the synch link DRAM (SLDRAM), and the Direct Rambus RAM (DR RAM), etc. That is to say, the memories in the embodiments of the present disclosure are intended to include but not limited to these and any other suitable types of memories.An embodiment of the present disclosure further provides a computer-readable storage medium for storing the computer program.Alternatively, the computer-readable storage medium may be applied to the network device in the embodiments of the present disclosure, and the computer program may enable the computer to execute the corresponding processes implemented by the network device in each method in the embodiments of the present disclosure, which will not be repeated here for the sake of brevity.Alternatively, the computer-readable storage medium may be applied to the mobile terminal/the terminal in the embodiments of the present disclosure, and the computer program may enable the computer to execute the corresponding processes implemented by the mobile terminal/the terminal in each method in the embodiments of the present disclosure, which will not be repeated here for the sake of brevity.An embodiment of the present disclosure further provides a computer program product, including a computer program instruction.Alternatively, the computer program product may be applied to the network device in the embodiments of the present disclosure, and the computer program instruction may enable the computer to execute the corresponding processes implemented by the network device in each method in the embodiments of the present disclosure, which will not be repeated here for the sake of brevity.Alternatively, the computer program product may be applied to the mobile terminal/the terminal in the embodiments of the present disclosure, and the computer program instruction may enable the computer to execute the corresponding processes implemented by the mobile terminal/the terminal in each method in the embodiments of the present disclosure, which will not be repeated here for the sake of brevity.An embodiment of the present disclosure also provides a computer program.Alternatively, the computer program may be applied to the network device in the embodiments of the present disclosure, and the computer program, when running on a computer, may enable the computer to execute the corresponding processes implemented by the network device in each method in the embodiments of the present disclosure, which will not be repeated here for the sake of brevity.Alternatively, the computer program may be applied to the mobile terminal/the terminal in the embodiments of the present disclosure, and the computer program, when running on a computer, may enable the computer to execute the corresponding processes implemented by the mobile terminal/the terminal in each method in the embodiments of the present disclosure, which will not be repeated here for the sake of brevity.Those of ordinary skill in the art may realize that units and algorithm steps of each example described in combination with the embodiments disclosed herein can be implemented by electronic hardware or a combination of computer software and the electronic hardware. Whether these functions are executed by the hardware or the software depends on specific applications and design constraints of a technical solution. Professionals may use different methods to implement the described functions for each specific application, but such implementations shall not be considered beyond the scope of the present disclosure.Those skilled in the art can clearly understand that for convenience and conciseness of the description, specific working processes of the systems, apparatuses and units described above may refer to the corresponding processes in the embodiments of the above methods, and will not be repeated here.In several embodiments provided by the present disclosure, it should be understood that the disclosed systems, apparatuses, and methods may be implemented in other ways. For example, the apparatus embodiments described above are only schematic, for example, a division of the units is only a kind of logical function division, and there may be other division methods in actual implementation. For example, multiple units or components can be combined or integrated into another system, or some features can be ignored or not implemented. On the other hand, a mutual coupling or a direct coupling or a communication connection shown or discussed may be an indirect coupling or a communication connection through some interfaces, apparatus or units, and may be in the form of electrical, mechanical or other forms.The units described as separate parts may or may not be physically separated, and parts displayed as units may be or may not be physical units; that is, they may be located in the same place or distributed over multiple network units. Part or all of the units can be selected according to actual needs to implement the purpose of the solution of the embodiments.In addition, each functional unit in each embodiment of the present disclosure may be integrated in one processing unit, or each unit may physically exist independently, or two or more units may be integrated in one unit.The functions may be stored in a computer-readable storage medium if being implemented in the form of a software functional unit and sold or used as an independent product. Based on such understanding, the essence of the technical solutions of the present disclosure, or the part contributing to the related art or a part of the technical solutions, may be embodied in the form of a software product. The computer software product is stored in a storage medium including a number of instructions such that a computer device (which may be a personal computer, a server, or a network device, etc.) performs all or a part of steps of the method described in each of the embodiments of the present disclosure. The foregoing storage medium includes any medium that is capable of storing program codes such as a USB disk, a mobile hard disk, a read-only memory, a random access memory, a magnetic disk, or an optical disk.The foregoing descriptions are merely detailed embodiments of the present disclosure, and the protection scope of the present disclosure is not limited thereto. Any person skilled in the art can easily think of changes or substitutions within the technical scope of the present disclosure, and all the changes or substitutions should be covered by the protection scope of the present disclosure. Therefore, the protection scope of the present disclosure should be subjected to the protection scope of the claims.

Вам могут быть интересны следующие патенты

Рисунок 1. Взаимосвязь патентов (ближайшие 20).

Cell indication method and apparatus, cell switching method and apparatus, and service node, terminal and medium

Номер патента: US20240306052A1. Автор: Feng Xie,Jie Li,Wanfu Xu. Владелец: ZTE Corp. Дата публикации: 2024-09-12.

Communication method and apparatus

Номер патента: EP4436240A1. Автор: Rui Wang,Xingxing HU. Владелец: Huawei Technologies Co Ltd. Дата публикации: 2024-09-25.

Communication Method and Apparatus

Номер патента: US20220167235A1. Автор: Hongping Zhang,Tingting GENG,Xingxing HU. Владелец: Huawei Technologies Co Ltd. Дата публикации: 2022-05-26.

Information processing method and apparatus

Номер патента: US20240244462A1. Автор: Xue Yan,Nan Yan. Владелец: Datang Mobile Communications Equipment Co Ltd. Дата публикации: 2024-07-18.

Information processing method and apparatus

Номер патента: EP4354944A1. Автор: Xue Yan,Nan Yan. Владелец: Datang Mobile Communications Equipment Co Ltd. Дата публикации: 2024-04-17.

Cell indication method and apparatus, cell switching method and apparatus, and service node, terminal and medium

Номер патента: EP4366377A1. Автор: Feng Xie,Jie Li,Wanfu Xu. Владелец: ZTE Corp. Дата публикации: 2024-05-08.

Cell indication method and apparatus, cell switching method and apparatus, and service node, terminal and medium

Номер патента: CA3224086A1. Автор: Feng Xie,Jie Li,Wanfu Xu. Владелец: ZTE Corp. Дата публикации: 2023-01-05.

METHOD AND APPARATUS FOR CONFIGURING UE INFORMATION, BASE STATION AND CORE NETWORK DEVICE

Номер патента: US20190327786A1. Автор: Hong Wei. Владелец: BEIJING XIAOMI MOBILE SOFTWARE CO., LTD.. Дата публикации: 2019-10-24.

METHOD AND APPARATUS FOR ESTABLISHING CONNECTION BETWEEN TERMINAL AND BASE STATION

Номер патента: US20210307081A1. Автор: Kim Dongmin,JUNG Doyoung,JEON Namryul,RYU Seungbo,CHOE Balgeum. Владелец: . Дата публикации: 2021-09-30.

Information reporting method and receiving method, apparatus and device

Номер патента: US20230284056A1. Автор: Jing Liang,Nan Yan,Jing Fu. Владелец: Datang Mobile Communications Equipment Co Ltd. Дата публикации: 2023-09-07.

Method and apparatus for communication between a terminal and a server

Номер патента: US12041579B2. Автор: Xiaobo Yu,Zhen Tao. Владелец: Alibaba Group Holding Ltd. Дата публикации: 2024-07-16.

Radio communication method and device, electronic apparatus and storage medium

Номер патента: WO2023136507A1. Автор: Hong Wang,Weiwei Wang,Lixiang Xu,Lisi LI. Владелец: SAMSUNG ELECTRONICS CO., LTD.. Дата публикации: 2023-07-20.

Configuration method and communication apparatus

Номер патента: US20240357326A1. Автор: Haibo Xu,Yiru KUANG. Владелец: Huawei Technologies Co Ltd. Дата публикации: 2024-10-24.

Communication method and apparatus, relay device, and terminal device

Номер патента: EP4171117A1. Автор: Xing Liu. Владелец: Spreadtrum Communications Shanghai Co Ltd. Дата публикации: 2023-04-26.

Relay communication method and relay communications apparatus and system

Номер патента: US11770865B2. Автор: Xiao Xiao,BO Lin,Jing Wang. Владелец: Huawei Technologies Co Ltd. Дата публикации: 2023-09-26.

Key updating method and apparatus

Номер патента: EP3737032A1. Автор: HE Li,Jing Chen. Владелец: Huawei Technologies Co Ltd. Дата публикации: 2020-11-11.

Key Update Method And Apparatus

Номер патента: US20200336305A1. Автор: HE Li,Jing Chen. Владелец: Huawei Technologies Co Ltd. Дата публикации: 2020-10-22.

Key update method and apparatus

Номер патента: AU2019205078A1. Автор: HE Li,Jing Chen. Владелец: Huawei Technologies Co Ltd. Дата публикации: 2020-08-27.

Communication method and apparatus

Номер патента: CA3206606A1. Автор: HUI Ni,Yongcui Li. Владелец: Huawei Technologies Co Ltd. Дата публикации: 2022-08-04.

Method and apparatus for processing rrc message, user equipment, and network device

Номер патента: WO2021147089A1. Автор: 杨宁,王淑坤. Владелец: Oppo广东移动通信有限公司. Дата публикации: 2021-07-29.

SIGNALING TRANSMISSION METHOD AND APPARATUS, BASE STATION, AND TERMINAL

Номер патента: US20200374756A1. Автор: Wu Hao,Lu Chen,XIE Fang. Владелец: ZTE CORPORATION. Дата публикации: 2020-11-26.

Paging Method and Device

Номер патента: US20190342853A1. Автор: Lili Zhang,Aimin Justin Sang,Guorong Li. Владелец: Huawei Technologies Co Ltd. Дата публикации: 2019-11-07.

Communication method and apparatus

Номер патента: EP4271113A1. Автор: HUI Ni,Yongcui Li. Владелец: Huawei Technologies Co Ltd. Дата публикации: 2023-11-01.

Communication method and communications apparatus

Номер патента: US11758591B2. Автор: LE Yan,Qinghai Zeng,Hongping Zhang,Tingting GENG. Владелец: Huawei Technologies Co Ltd. Дата публикации: 2023-09-12.

Information transmission method and apparatus

Номер патента: US20240244639A1. Автор: Xiaolei Tie,Wenwen HUANG,Zhanzhan ZHANG. Владелец: Huawei Technologies Co Ltd. Дата публикации: 2024-07-18.

Information reporting method and apparatus

Номер патента: US20190124537A1. Автор: Jianqin Liu,Ruiqi ZHANG. Владелец: Huawei Technologies Co Ltd. Дата публикации: 2019-04-25.

Communication method and apparatus

Номер патента: US20240334223A1. Автор: Rui Wang,Xingxing HU. Владелец: Huawei Technologies Co Ltd. Дата публикации: 2024-10-03.

Communication method and apparatus

Номер патента: EP4080989A1. Автор: Wenjie Peng. Владелец: Huawei Technologies Co Ltd. Дата публикации: 2022-10-26.

Application layer measurement collection method, and communication apparatus

Номер патента: EP4432724A1. Автор: Xingxing HU. Владелец: Huawei Technologies Co Ltd. Дата публикации: 2024-09-18.

Application layer measurement collection method and communication apparatus

Номер патента: US20240349109A1. Автор: Xingxing HU. Владелец: Huawei Technologies Co Ltd. Дата публикации: 2024-10-17.

Measurement method and measurement apparatus

Номер патента: US12075273B2. Автор: Qian Zhang,Shulan Feng,Meng Deng,Daoming Liu. Владелец: Huawei Technologies Co Ltd. Дата публикации: 2024-08-27.

Communication method, and communications apparatus and system

Номер патента: US12058662B2. Автор: Xun Tang,Li Chai. Владелец: Huawei Technologies Co Ltd. Дата публикации: 2024-08-06.

Communication method and communications apparatus

Номер патента: US11902805B2. Автор: Zhuoming Li. Владелец: Huawei Technologies Co Ltd. Дата публикации: 2024-02-13.

Communication method and communication apparatus

Номер патента: EP3965457A1. Автор: Zhou Xu,Liwen Zhang,Quanzhong Gao,Quan Ge. Владелец: Huawei Technologies Co Ltd. Дата публикации: 2022-03-09.

Channel Information Reporting Method and Apparatus

Номер патента: US20230269046A1. Автор: Kunpeng Liu,Shijie CAI. Владелец: Huawei Technologies Co Ltd. Дата публикации: 2023-08-24.

Method and apparatus for reporting channel information

Номер патента: EP4224905A1. Автор: Kunpeng Liu,Shijie CAI. Владелец: Huawei Technologies Co Ltd. Дата публикации: 2023-08-09.

Non-cell-defining synchronization signal related methods and apparatus

Номер патента: WO2024082144A1. Автор: LI ZHANG. Владелец: ZTE CORPORATION. Дата публикации: 2024-04-25.

Relay communication method and apparatus

Номер патента: EP4072200A1. Автор: Jun Wang,Peng Zhang,Mingzeng Dai,Qinghai Zeng,Rongkuan Liu. Владелец: Huawei Technologies Co Ltd. Дата публикации: 2022-10-12.

REPORTING METHOD AND RECEIVING METHOD OF CHANNEL STATE INFORMATION, TERMINAL, AND NETWORK DEVICE

Номер патента: US20220053359A1. Автор: Song Yang,Sun Peng,REN Qianyao. Владелец: . Дата публикации: 2022-02-17.

Measurement method and acquisition method for packet loss rate, terminal, and network device

Номер патента: EP3796597B1. Автор: Yumin Wu. Владелец: Vivo Mobile Communication Co Ltd. Дата публикации: 2023-08-30.

Communication method and communication apparatus

Номер патента: EP4373153A1. Автор: Jian Yu,Jiafeng SHAO,Yiran Li,Wenqi ZHAO. Владелец: Huawei Technologies Co Ltd. Дата публикации: 2024-05-22.

Communication method, and communications apparatus and system

Номер патента: EP3806520A1. Автор: Xun Tang,Li Chai. Владелец: Huawei Technologies Co Ltd. Дата публикации: 2021-04-14.

Method and device for radio resource management measurement

Номер патента: EP3618489A1. Автор: Zhi Zhang. Владелец: GUANGDONG OPPO MOBILE TELECOMMUNICATIONS CORP LTD. Дата публикации: 2020-03-04.

Communication method and communication apparatus

Номер патента: EP4096284A1. Автор: LE Yan,Chong LOU,Tingting GENG. Владелец: Huawei Technologies Co Ltd. Дата публикации: 2022-11-30.

Communication method and related device

Номер патента: EP4012958A1. Автор: Haiyan Luo,Lili Zheng. Владелец: Huawei Technologies Co Ltd. Дата публикации: 2022-06-15.

Interference measurement method and related device

Номер патента: CA3057541C. Автор: Lili Zhang. Владелец: Huawei Technologies Co Ltd. Дата публикации: 2024-05-21.

Communication method and communication apparatus

Номер патента: US20240196422A1. Автор: Jian Yu,Jiafeng SHAO,Yiran Li,Wenqi ZHAO. Владелец: Huawei Technologies Co Ltd. Дата публикации: 2024-06-13.

Communication method and device

Номер патента: EP3627875A1. Автор: Min Xu,Qinghai Zeng,Tingting GENG. Владелец: Huawei Technologies Co Ltd. Дата публикации: 2020-03-25.

Relay communication method and communications apparatus

Номер патента: US20220330362A1. Автор: Jun Wang,Peng Zhang,Mingzeng Dai,Qinghai Zeng,Rongkuan Liu. Владелец: Huawei Technologies Co Ltd. Дата публикации: 2022-10-13.

Transmission path configuration method and apparatus, communication device and terminal

Номер патента: EP4422281A1. Автор: Yali Zhao. Владелец: Datang Mobile Communications Equipment Co Ltd. Дата публикации: 2024-08-28.

Subscription management method and related apparatus

Номер патента: EP4447560A1. Автор: Yang Wang,Xueqiang Yan,Shaoyun Wu,Mingyu ZHAO,Weijun XING. Владелец: Huawei Technologies Co Ltd. Дата публикации: 2024-10-16.

Method and apparatus for interaction between terminal and core network

Номер патента: EP4429343A1. Автор: Xiaolong Li. Владелец: Beijing Xiaomi Mobile Software Co Ltd. Дата публикации: 2024-09-11.

Paging indication method and apparatus, and user equipment, access network device and storage medium

Номер патента: US20240267885A1. Автор: Rao SHI. Владелец: Beijing Xiaomi Mobile Software Co Ltd. Дата публикации: 2024-08-08.

Communication method, network device and terminal

Номер патента: EP3675459A1. Автор: Hong Li,FENG HAN,Wei Tan,Yinghao JIN. Владелец: Huawei Technologies Co Ltd. Дата публикации: 2020-07-01.

Communication method, network device, and terminal

Номер патента: US20200228637A1. Автор: Hong Li,FENG HAN,Wei Tan,Yinghao JIN. Владелец: Individual. Дата публикации: 2020-07-16.

Paging method and device

Номер патента: EP4024976A1. Автор: Zhenhua Xie,Xiaowan KE. Владелец: Vivo Mobile Communication Co Ltd. Дата публикации: 2022-07-06.

Communication method and apparatus, relay device, and terminal device

Номер патента: EP4171117A4. Автор: Xing Liu. Владелец: Spreadtrum Communications Shanghai Co Ltd. Дата публикации: 2023-12-13.

Communication method and apparatus, user equipment, base station, core network device, and storage medium

Номер патента: EP4380211A1. Автор: Wei Hong. Владелец: Beijing Xiaomi Mobile Software Co Ltd. Дата публикации: 2024-06-05.

DATA TRANSMISSION METHOD AND DEVICE, NETWORK APPARATUS AND TERMINAL

Номер патента: US20220070945A1. Автор: Shi Cong,WANG Shukun. Владелец: GUANGDONG OPPO MOBILE TELECOMMUNICATIONS CORP., LTD.. Дата публикации: 2022-03-03.

Communication method and communications device

Номер патента: US11452069B2. Автор: Xiaosong Zhu,Yiling Wu. Владелец: Huawei Technologies Co Ltd. Дата публикации: 2022-09-20.

Method and system for triggering response of terminal, terminal and network side

Номер патента: EP2725830A4. Автор: Hao Wu. Владелец: ZTE Corp. Дата публикации: 2015-11-25.

Multimode terminal information processing method, multimode terminal and access network device

Номер патента: US09769722B2. Автор: Xiaowu Zhao,Ting Lu,YuanFang Yu. Владелец: ZTE Corp. Дата публикации: 2017-09-19.

Connection control method and device

Номер патента: US20200404741A1. Автор: Yanchao KANG. Владелец: Vivo Mobile Communication Co Ltd. Дата публикации: 2020-12-24.

METHOD AND APPARATUS FOR REPORTING INFORMATION BY TERMINAL, AND COMPUTER STORAGE MEDIUM

Номер патента: US20200351819A1. Автор: Liu Jianhua. Владелец: . Дата публикации: 2020-11-05.

Information transmission and indication method and apparatus, and communications device

Номер патента: US20240107562A1. Автор: Siqi LIU,Zichao JI. Владелец: Vivo Mobile Communication Co Ltd. Дата публикации: 2024-03-28.

Method and apparatus for determining resource location, terminal, and network device

Номер патента: US20240340348A1. Автор: Huayu Zhou,Zhenzhu LEI. Владелец: Spreadtrum Semiconductor Nanjing Co Ltd. Дата публикации: 2024-10-10.

Data transmission method and apparatus, base station, and terminal

Номер патента: EP4376460A1. Автор: Ye Zhou,Li Chen,RUI Zhou,Jing Liang. Владелец: Datang Mobile Communications Equipment Co Ltd. Дата публикации: 2024-05-29.

Data transmission method and apparatus, base station, and terminal

Номер патента: US20240306167A1. Автор: Ye Zhou,Li Chen,RUI Zhou,Jing Liang. Владелец: Datang Mobile Communications Equipment Co Ltd. Дата публикации: 2024-09-12.

Emergency call method and apparatus, storage medium, and terminal

Номер патента: US20230309191A1. Автор: Liu Li,Bin Cheng. Владелец: Yulong Computer Telecommunication Scientific Shenzhen Co Ltd. Дата публикации: 2023-09-28.

Transmission method and apparatus, communication device, and terminal

Номер патента: EP4426029A1. Автор: Yang Song,HAO LIU,Peng Sun. Владелец: Vivo Mobile Communication Co Ltd. Дата публикации: 2024-09-04.

Method and apparatus for wakeup, and terminal

Номер патента: US20240147364A1. Автор: Xueming PAN,Xin Qu,Xiaodong Shen. Владелец: Vivo Mobile Communication Co Ltd. Дата публикации: 2024-05-02.

Uplink control information transmission/configuration indication method and device, terminal and base station

Номер патента: US11791930B2. Автор: Bo Gao,Yijian Chen,Zhaohua Lu,Yungok Li. Владелец: ZTE Corp. Дата публикации: 2023-10-17.

Method and apparatus for processing user-related data service and network element

Номер патента: US20240244431A1. Автор: Xiaodong Yang,Yannan YUAN. Владелец: Vivo Mobile Communication Co Ltd. Дата публикации: 2024-07-18.

Data transmission method for terminal performing near field communication and terminal thereof

Номер патента: US09538370B2. Автор: Jae-Woo Ko,Tae-hwan Wi. Владелец: SAMSUNG ELECTRONICS CO LTD. Дата публикации: 2017-01-03.

Data packet transmission method and apparatus, storage medium and terminal

Номер патента: EP3979733A1. Автор: Chinghwa YU,Yanchao XU,Yuhren JAUH. Владелец: Spreadtrum Communications Shanghai Co Ltd. Дата публикации: 2022-04-06.

Method and apparatus for controlling communication state, terminal, and network device

Номер патента: EP3962179A1. Автор: Weijie XU. Владелец: GUANGDONG OPPO MOBILE TELECOMMUNICATIONS CORP LTD. Дата публикации: 2022-03-02.

Method and device for route processing and terminal device

Номер патента: RU2702352C1. Автор: Хуэй НИ,Юнчуй ЛИ. Владелец: Хуавей Текнолоджиз Ко., Лтд.. Дата публикации: 2019-10-08.

Method and apparatus for triggering non-unicast service operation, and network functions

Номер патента: EP4284032A1. Автор: Zhenhua Xie,Xiaowan KE. Владелец: Vivo Mobile Communication Co Ltd. Дата публикации: 2023-11-29.

Method and apparatus for triggering non-unicast service operation, and network functions

Номер патента: US20240022880A1. Автор: Zhenhua Xie,Xiaowan KE. Владелец: Vivo Mobile Communication Co Ltd. Дата публикации: 2024-01-18.

Method and apparatus for acquiring traffic feature analysis result, and network side device

Номер патента: EP4354806A1. Автор: Xiaobo Wu,Xiaowan KE. Владелец: Vivo Mobile Communication Co Ltd. Дата публикации: 2024-04-17.

Switching method and apparatus, storage medium, and terminal

Номер патента: EP4152820A1. Автор: Min Xu. Владелец: Spreadtrum Communications Shanghai Co Ltd. Дата публикации: 2023-03-22.

Method and apparatus for determining default beam, user equipment, and network device

Номер патента: EP4274347A1. Автор: Mingju Li. Владелец: Beijing Xiaomi Mobile Software Co Ltd. Дата публикации: 2023-11-08.

Bearer mapping method and apparatus, base station, and terminal

Номер патента: EP3667982A1. Автор: Li Chen,MENG Xu,Jing Liang,Fangli XU. Владелец: China Academy of Telecommunications Technology CATT. Дата публикации: 2020-06-17.

Information retransmission method and apparatus, base station, and terminal

Номер патента: US11832221B2. Автор: Juejia Zhou. Владелец: Beijing Xiaomi Mobile Software Co Ltd. Дата публикации: 2023-11-28.

Interference detection method and apparatus, storage medium, and terminal

Номер патента: US20230019598A1. Автор: Kai Li,Liyun Luo. Владелец: Rda Microelectronics Technologies (shanghai) Co Ltd. Дата публикации: 2023-01-19.

Method and apparatus for determining time window, terminal, and readable storage medium

Номер патента: EP4447363A1. Автор: Kai Wu,Yi Gu,Rongrong SUN. Владелец: Vivo Mobile Communication Co Ltd. Дата публикации: 2024-10-16.

Bearer mapping method and device thereof, base station and terminal

Номер патента: US20200367091A1. Автор: Li Chen,MENG Xu,Jing Liang,Fangli XU. Владелец: China Academy of Telecommunications Technology CATT. Дата публикации: 2020-11-19.

Bearer mapping method and device thereof, base station and terminal

Номер патента: US11178567B2. Автор: Li Chen,MENG Xu,Jing Liang,Fangli XU. Владелец: Datang Mobile Communications Equipment Co Ltd. Дата публикации: 2021-11-16.

Apparatuses and method for granting a permit to network devices for joining a network

Номер патента: US20200389793A1. Автор: Li Lu,Jie Zeng,Wuqiang Liao,Huajin HUANG. Владелец: LEDVANCE GmbH. Дата публикации: 2020-12-10.

Control method and apparatus for obtaining emergency service, terminal, and readable storage medium

Номер патента: US20230137356A1. Автор: Yanxia Zhang. Владелец: Vivo Mobile Communication Co Ltd. Дата публикации: 2023-05-04.

Method and apparatus for processing SI request, terminal and storage medium

Номер патента: US11910296B2. Автор: Xiaowei Jiang. Владелец: Beijing Xiaomi Mobile Software Co Ltd. Дата публикации: 2024-02-20.

Method and apparatus for communication between a terminal and a base station

Номер патента: US11812360B2. Автор: Xiaobo Yu,Zhen Tao. Владелец: Alibaba Group Holding Ltd. Дата публикации: 2023-11-07.

Signal transmission method and device, network apparatus, and storage medium

Номер патента: EP4007416A1. Автор: Peng Hao,Yu Ngok Li,Xianghui HAN,Wei Gou. Владелец: ZTE Corp. Дата публикации: 2022-06-01.

Signal transmission method and device, network apparatus, and storage medium

Номер патента: US20220279569A1. Автор: Peng Hao,Yu Ngok Li,Xianghui HAN,Wei Gou. Владелец: ZTE Corp. Дата публикации: 2022-09-01.

Apparatuses and method for granting a permit to network devices for joining a network

Номер патента: US11758400B2. Автор: Li Lu,Jie Zeng,Wuqiang Liao,Huajin HUANG. Владелец: LEDVANCE GmbH. Дата публикации: 2023-09-12.

Multi-cell configuration method and apparatus, storage medium, terminal and base station

Номер патента: EP3965455A1. Автор: Lifeng Han. Владелец: Spreadtrum Communications Shanghai Co Ltd. Дата публикации: 2022-03-09.

Communication method and apparatus for multicast/broadcast service

Номер патента: AU2021426995A1. Автор: Fenqin Zhu,Zaifeng Zong,Wenfu Wu,Jianxin JIA. Владелец: Huawei Technologies Co Ltd. Дата публикации: 2023-08-17.

Communication method, communication apparatus, and communication system

Номер патента: US20240365204A1. Автор: Wenjie Peng,Yuzhe FANG. Владелец: Huawei Technologies Co Ltd. Дата публикации: 2024-10-31.

Method and device for leaving network and terminal

Номер патента: WO2021244518A1. Автор: 杨晓东,鲍炜,刘选兵. Владелец: 维沃移动通信有限公司. Дата публикации: 2021-12-09.

Method and device for leaving network and terminal

Номер патента: EP4164330A4. Автор: Xiaodong Yang,Wei Bao,Xuanbing Liu. Владелец: Vivo Mobile Communication Co Ltd. Дата публикации: 2023-11-29.

Model updating method and apparatus, storage medium, terminal and network device

Номер патента: US20240323717A1. Автор: Xiaoyu Chen,Lifeng Han. Владелец: Spreadtrum Communications Shanghai Co Ltd. Дата публикации: 2024-09-26.

Method and apparatus for network slice configuration

Номер патента: US20210160763A1. Автор: Jian Zhang,Qinghai Zeng,Chong LOU. Владелец: Huawei Technologies Co Ltd. Дата публикации: 2021-05-27.

Enhanced collaboration between user equpiment and network to facilitate machine learning

Номер патента: US20240349082A1. Автор: QIAN LI,Zongrui Ding,Dawei YING,Ziyi Li. Владелец: Intel Corp. Дата публикации: 2024-10-17.

Clock status synchronization method and communication apparatus

Номер патента: AU2023234397A1. Автор: Yuan Wang,Runze ZHOU,Xin Zang. Владелец: Huawei Technologies Co Ltd. Дата публикации: 2024-10-10.

Information transmission and reception method and apparatus

Номер патента: US20210006954A1. Автор: Xu Hui,Lu Chen,Ma Zijiang,Ji Zhongwei,Wang Yaying,DING JIANFENG,ZHAO Xiangmo,HUI Fei,HUA Xiaoquan. Владелец: . Дата публикации: 2021-01-07.

Communication method and communication apparatus

Номер патента: EP4408071A1. Автор: Tingting GENG,Xingxing HU,Wuyang ZHENG. Владелец: Huawei Technologies Co Ltd. Дата публикации: 2024-07-31.

Communication method and communication apparatus

Номер патента: US20240357437A1. Автор: Rong Li,Jian Wang,Yunfei Qiao,Gongzheng ZHANG. Владелец: Huawei Technologies Co Ltd. Дата публикации: 2024-10-24.

Communication method and communication apparatus

Номер патента: EP4451744A1. Автор: Rong Li,Jian Wang,Yunfei Qiao,Gongzheng ZHANG. Владелец: Huawei Technologies Co Ltd. Дата публикации: 2024-10-23.

Method for adjusting channel quality indicator (cqi), and terminal device

Номер патента: EP4135391A1. Автор: Kun Xu,Jianhua Yang,Yifan Xue,Ao Guo. Владелец: Huawei Technologies Co Ltd. Дата публикации: 2023-02-15.

Power control method and apparatus, network node, terminal and storage medium

Номер патента: US20240306097A1. Автор: Wei Cao,Nan Zhang,Chenchen Zhang,Yachao YIN. Владелец: ZTE Corp. Дата публикации: 2024-09-12.

Communication methods and apparatuses and computer-readable storage medium

Номер патента: EP4266814A3. Автор: Xing Liu,Xiaoying Xu,Qufang Huang,Chong LOU. Владелец: Huawei Technologies Co Ltd. Дата публикации: 2023-12-20.

Communication methods and apparatuses and computer-readable storage medium

Номер патента: EP4266814A2. Автор: Xing Liu,Xiaoying Xu,Qufang Huang,Chong LOU. Владелец: Huawei Technologies Co Ltd. Дата публикации: 2023-10-25.

Capability configuration method and apparatus

Номер патента: US20210400467A1. Автор: Hao Tang,Zhenfei Tang,Junchao LI,Guohua Zhou. Владелец: Huawei Technologies Co Ltd. Дата публикации: 2021-12-23.

Method and apparatus for network slice configuration

Номер патента: US20190182752A1. Автор: Jian Zhang,Qinghai Zeng,Chong LOU. Владелец: Huawei Technologies Co Ltd. Дата публикации: 2019-06-13.

Communications method and apparatus

Номер патента: US11799968B2. Автор: Xing Liu,Xiaoying Xu,Qufang Huang,Chong LOU. Владелец: Huawei Technologies Co Ltd. Дата публикации: 2023-10-24.

Method and apparatus for processing discontinuous reception, terminal, and network side device

Номер патента: EP4164331A4. Автор: Qian Zheng,Xiaodong Yang. Владелец: Vivo Mobile Communication Co Ltd. Дата публикации: 2023-12-20.

Data processing method and device, network side equipment and terminal equipment

Номер патента: CN109347606B. Автор: 吴昱民,林元杰,李中煌,张云璿. Владелец: Vivo Mobile Communication Co Ltd. Дата публикации: 2021-08-24.

Power control method and apparatus, network node, terminal and storage medium

Номер патента: EP4340433A1. Автор: Wei Cao,Nan Zhang,Chenchen Zhang,Yachao YIN. Владелец: ZTE Corp. Дата публикации: 2024-03-20.

Resource scheduling method, communication apparatus and system

Номер патента: EP4184964A1. Автор: Chunhua YOU,Qiang Fan. Владелец: Huawei Technologies Co Ltd. Дата публикации: 2023-05-24.

METHOD AND MOBILE TERMINAL FOR MANAGING CIRCUIT SWITCHED FALLBACK PROCEDURE AND NETWORK REGISTRATION

Номер патента: US20130235740A1. Автор: LEE Ha Na,KIM Myong Ju. Владелец: Pantech Co., Ltd.. Дата публикации: 2013-09-12.

Detection method and indication method for downlink control channel, terminal, and network side device

Номер патента: EP3528529B1. Автор: Xiaodong Shen. Владелец: Vivo Mobile Communication Co Ltd. Дата публикации: 2023-05-10.

Apparatus and method for graceful cell shutdown

Номер патента: WO2023184343A1. Автор: Feng Li,Han Zhang,Rong GE,Rongbin LI,ZhengLin NI. Владелец: Nokia Shanghai Bell Co., Ltd.. Дата публикации: 2023-10-05.

Method and apparatus for indicating reference signal, terminal, and network device

Номер патента: US12034664B2. Автор: Chuanfeng He. Владелец: GUANGDONG OPPO MOBILE TELECOMMUNICATIONS CORP LTD. Дата публикации: 2024-07-09.

Call connection method and apparatus, storage medium, and terminal

Номер патента: EP4093004A1. Автор: Junjie Deng. Владелец: GUANGDONG OPPO MOBILE TELECOMMUNICATIONS CORP LTD. Дата публикации: 2022-11-23.

Method and apparatus for detecting state of bgp session, and network device

Номер патента: US20230344747A1. Автор: Lei Li,Lili Wang,Haibo Wang,Wenyan Li. Владелец: Huawei Technologies Co Ltd. Дата публикации: 2023-10-26.

Enabling method and enabling device for debugging port of terminal, and terminal

Номер патента: US09501435B2. Автор: Ninghua Peng. Владелец: ZTE Corp. Дата публикации: 2016-11-22.

Method and apparatus for service request, negotiation and response, and network device and system

Номер патента: EP3832969A1. Автор: LU Zhang. Владелец: ZTE Corp. Дата публикации: 2021-06-09.

Calling method and device, computer storage medium, and terminal

Номер патента: US20190104079A1. Автор: Fengling Wang. Владелец: Tencent Technology Shenzhen Co Ltd. Дата публикации: 2019-04-04.

Polar code decoding method and apparatus, storage medium, and terminal

Номер патента: US11936401B2. Автор: Guangming Shi. Владелец: Sanechips Technology Co Ltd. Дата публикации: 2024-03-19.

Calling method and device, computer storage medium, and terminal

Номер патента: EP3490199A1. Автор: Junbin LIANG,Fengling Wang. Владелец: Tencent Technology Shenzhen Co Ltd. Дата публикации: 2019-05-29.

Virus feature extraction method and system, and storage medium and terminal

Номер патента: EP4184358A1. Автор: Kaizhi Wei,Enyang GUAN,Wenxiang LIANG. Владелец: Sangfor Technologies Co Ltd. Дата публикации: 2023-05-24.

Apparatus and method for distributing authentication keys to network devices in a multicast

Номер патента: WO2000038392A3. Автор: Thomas Hardjono. Владелец: Thomas Hardjono. Дата публикации: 2000-08-17.

Apparatus and method for inductively powering and networking a rail of a firearm

Номер патента: CA3037405C. Автор: David Compton,Gary E. Crocker. Владелец: Colt Canada IP Holding Partnership. Дата публикации: 2020-07-28.

Information recording apparatus and method, and information reproduction apparatus and method

Номер патента: MY142355A. Автор: Motoki Kato. Владелец: Sony Corp. Дата публикации: 2010-11-30.

Communication method and related communication apparatus and storage medium

Номер патента: AU2022204336A1. Автор: Gong Yifan,JIN Jiangming. Владелец: Beijing Tusimple Technology Co Ltd. Дата публикации: 2023-01-19.

Imaging apparatus and method, and image processing apparatus and method

Номер патента: US20200348491A1. Автор: Yoshitaka Miyatani,Noriaki Kozuka. Владелец: Sony Corp. Дата публикации: 2020-11-05.

Image processing method and device, camera apparatus and storage medium

Номер патента: US12080030B2. Автор: Zhaojun Liu,Weijing MO,Hu Mengyuan ZHANG. Владелец: Shenzhen Stan Technology Co Ltd. Дата публикации: 2024-09-03.

Image processing method and device, camera apparatus and storage medium

Номер патента: US20220245862A1. Автор: Zhaojun Liu,Weijing MO,Hu Mengyuan ZHANG. Владелец: Shenzhen Stan Technology Co Ltd. Дата публикации: 2022-08-04.

Information recording apparatus and method, and information reproduction apparatus and method

Номер патента: EP1471521A1. Автор: Motoki c/o Sony Corporation Kato. Владелец: Sony Corp. Дата публикации: 2004-10-27.

Image processing method and image processing apparatus, and electronic device using same

Номер патента: US12131490B2. Автор: JIN Wang,Yanqing Lu,Qiaoling Bian. Владелец: ArcSoft Corp Ltd. Дата публикации: 2024-10-29.

Video recording and reproducing method, and video reproducing apparatus and method

Номер патента: US09451229B2. Автор: Masaru Takahashi,Junji Shiokawa. Владелец: Hitachi Maxell Ltd. Дата публикации: 2016-09-20.

Image sensing device, method and device, electronic apparatus and medium

Номер патента: US20210136282A1. Автор: Jun Wu. Владелец: Beijing Xiaomi Mobile Software Co Ltd. Дата публикации: 2021-05-06.

Communication method and related communication apparatus and storage medium

Номер патента: US20220414024A1. Автор: Yifan Gong,Jiangming JIN. Владелец: Beijing Tusen Zhitu Technology Co., Ltd.. Дата публикации: 2022-12-29.

Communication method and control end apparatus and detection system using the same

Номер патента: US20130162819A1. Автор: Chien-Fa Wang. Владелец: ITE Tech Inc. Дата публикации: 2013-06-27.

Apparatus and method for supporting suspend of composite network device

Номер патента: US9032422B2. Автор: Jeong-Hoon Park,Jae-Young Jung,Kam-Rok Lee,Denis Vinogradov. Владелец: SAMSUNG ELECTRONICS CO LTD. Дата публикации: 2015-05-12.

Apparatus and method for determining household population from network device activity

Номер патента: US20180103113A1. Автор: Jaideep Chandrashekar,Yun-Jhong Wu. Владелец: THOMSON LICENSING. Дата публикации: 2018-04-12.

Clock sending apparatus and method, and clock receiving apparatus and method

Номер патента: EP4096099A1. Автор: Boxiong XU,Tongtong GUAN,Fuqian ZENG. Владелец: ZTE Corp. Дата публикации: 2022-11-30.

Video processing method and device, electronic apparatus, and readable storage medium

Номер патента: US20240135488A1. Автор: Pablo NAVARRETE MICHELINI,Yunhua LU. Владелец: BOE Technology Group Co Ltd. Дата публикации: 2024-04-25.

Input source search support method, and image display apparatus and projector using the search support method

Номер патента: US8264480B2. Автор: Shuichi Fujiwara. Владелец: Seiko Epson Corp. Дата публикации: 2012-09-11.

Method and system for synchronizing data between mobile terminal and internet phone

Номер патента: US20100128714A1. Автор: Hyo Jin Kim. Владелец: SAMSUNG ELECTRONICS CO LTD. Дата публикации: 2010-05-27.

Information interaction method and device, electronic apparatus, and computer readable storage medium

Номер патента: US11924500B2. Автор: Li Jia. Владелец: Beijing ByteDance Network Technology Co Ltd. Дата публикации: 2024-03-05.

Artwork transaction method and artwork transaction apparatus and computer program therefor

Номер патента: US11803843B2. Автор: Joss Daniel Giffard-Burley. Владелец: Wacom Co Ltd. Дата публикации: 2023-10-31.

Method and device for controlling 5g antenna, 5g terminal and computer readable storage medium

Номер патента: US20220352938A1. Автор: Dongmei Liu,Fengpeng Liu. Владелец: ZTE Corp. Дата публикации: 2022-11-03.

Method and device for controlling 5G antenna, 5G terminal and computer readable storage medium

Номер патента: US11979210B2. Автор: Dongmei Liu,Fengpeng Liu. Владелец: Xian Zhongxing New Software Co Ltd. Дата публикации: 2024-05-07.

Voice processing method, apparatus and system, smart terminal and electronic device

Номер патента: US20240105198A1. Автор: Zhiye YANG. Владелец: Beijing ByteDance Network Technology Co Ltd. Дата публикации: 2024-03-28.

Voice processing method, apparatus and system, smart terminal and electronic device

Номер патента: EP4243019A1. Автор: Zhiye YANG. Владелец: Beijing ByteDance Network Technology Co Ltd. Дата публикации: 2023-09-13.

Reference signal transmission method and apparatus

Номер патента: EP4440023A1. Автор: Weichao Chen,Rui Xu,Yi Qin,Shengyue DOU,Erkai CHEN,Youlong Cao. Владелец: Huawei Technologies Co Ltd. Дата публикации: 2024-10-02.

Reference signal transmission method and apparatus

Номер патента: US20240348394A1. Автор: Weichao Chen,Rui Xu,Yi Qin,Shengyue DOU,Erkai CHEN,Youlong Cao. Владелец: Huawei Technologies Co Ltd. Дата публикации: 2024-10-17.

Information transmission method and communication apparatus

Номер патента: US20240322892A1. Автор: Xueru Li,Hongli He,Shuangkaisheng BI. Владелец: Huawei Technologies Co Ltd. Дата публикации: 2024-09-26.

Power-saving handling method and apparatus, and user equipment

Номер патента: EP4255039A1. Автор: Yu Zeng,Siqi LIU,Shixiao LIU,Zichao JI. Владелец: Vivo Mobile Communication Co Ltd. Дата публикации: 2023-10-04.

Sidelink data transmission method and apparatus, and terminal

Номер патента: US20240205941A1. Автор: Rui Zhao,Chenxin LI,Shilei ZHENG. Владелец: Cict Connected And Intelligent Technologies Co Ltd. Дата публикации: 2024-06-20.

Method, apparatus and system for uplink information transmission

Номер патента: US20190215857A1. Автор: Zhi Zhang,Ya'nan Lin. Владелец: GUANGDONG OPPO MOBILE TELECOMMUNICATIONS CORP LTD. Дата публикации: 2019-07-11.

Power Saving Processing Method and Apparatus, and Terminal

Номер патента: US20230379827A1. Автор: Yu Zeng,Siqi LIU,Shixiao LIU,Zichao JI. Владелец: Vivo Mobile Communication Co Ltd. Дата публикации: 2023-11-23.

Data transmission method and apparatus, terminal and access network device

Номер патента: US20240306192A1. Автор: Wei Bai,Shiqiang Suo,Yujie Zhang. Владелец: Datang Mobile Communications Equipment Co Ltd. Дата публикации: 2024-09-12.

Method for channel monitoring and terminal

Номер патента: US20240364476A1. Автор: Yuhua Wang,Hualei WANG. Владелец: Beijing Ziguang Zhanrui Communication Technology Co Ltd. Дата публикации: 2024-10-31.

Information transmission method and communication apparatus

Номер патента: EP3869874A1. Автор: Zheng Chen,Lixia Xue. Владелец: Huawei Technologies Co Ltd. Дата публикации: 2021-08-25.

Information sending method and device and information receiving method and device

Номер патента: US20240040579A1. Автор: Peng Hao,Xing Liu,Feng Bi,Haigang HE. Владелец: ZTE Corp. Дата публикации: 2024-02-01.

Information sending method and device and information receiving method and device

Номер патента: US11825296B2. Автор: Peng Hao,Xing Liu,Feng Bi,Haigang HE. Владелец: ZTE Corp. Дата публикации: 2023-11-21.

Data transmission method, terminal, and network device

Номер патента: EP3826198A1. Автор: Runhua Chen,Xin Su,Qiubin Gao,Qiuping Huang,Deshan Miao. Владелец: Datang Mobile Communications Equipment Co Ltd. Дата публикации: 2021-05-26.

Signal Transmission Method for Random Access, Terminal, and Network-Side Device

Номер патента: US20230189351A1. Автор: NA Li,Kai Wu,Kun Yang. Владелец: Vivo Mobile Communication Co Ltd. Дата публикации: 2023-06-15.

Methods and devices for data communication based on license assisted access

Номер патента: WO2019014941A1. Автор: Gang Wang. Владелец: NEC Corporation. Дата публикации: 2019-01-24.

Data transmission method and apparatus, and terminal and access network device

Номер патента: EP4284100A1. Автор: Wei Bai,Shiqiang Suo,Yujie Zhang. Владелец: Datang Mobile Communications Equipment Co Ltd. Дата публикации: 2023-11-29.

Method and apparatus for determining default beam, user equipment, and network device

Номер патента: US20240063878A1. Автор: Mingju Li. Владелец: Beijing Xiaomi Mobile Software Co Ltd. Дата публикации: 2024-02-22.

Channel Resource Allocation Method and Apparatus

Номер патента: US20200163089A1. Автор: Han Xu,Yan Zeng. Владелец: Huawei Technologies Co Ltd. Дата публикации: 2020-05-21.

Clock frequency determining method and apparatus

Номер патента: US20240137199A1. Автор: JIANJUN WU,Wenliang LIANG,Enbo Wang,Ganghua Yang,Haihua Shen. Владелец: Huawei Technologies Co Ltd. Дата публикации: 2024-04-25.

Hybrid Automatic Repeat Request Harq Feedback Method And Apparatus

Номер патента: US20200177321A1. Автор: Chao Li,Jie Shi,Shulan Feng,Xingwei Zhang. Владелец: Huawei Technologies Co Ltd. Дата публикации: 2020-06-04.

Method and apparatus for sending indication information

Номер патента: US12089158B2. Автор: Lixia Xue,Xiaolei Tie. Владелец: Huawei Technologies Co Ltd. Дата публикации: 2024-09-10.

Sidelink feedback information transmission method and communication apparatus

Номер патента: EP4016898A1. Автор: FAN YANG,Xingwei Zhang. Владелец: Huawei Technologies Co Ltd. Дата публикации: 2022-06-22.

Data scheduling method and apparatus

Номер патента: US12035343B2. Автор: Jinlin Peng,Zhenfei Tang,Jiehua Xiao. Владелец: Huawei Technologies Co Ltd. Дата публикации: 2024-07-09.

Data transmission method and apparatus, base station, and terminal

Номер патента: EP4376460A4. Автор: Ye Zhou,Li Chen,RUI Zhou,Jing Liang. Владелец: Datang Mobile Communications Equipment Co Ltd. Дата публикации: 2024-05-29.

Random access resource configuration method and apparatus

Номер патента: US12069740B2. Автор: Lei Chen,Fengwei Liu,Shitong YUAN,Jing Qiu. Владелец: Huawei Technologies Co Ltd. Дата публикации: 2024-08-20.

Method and apparatus for controlling communication state, terminal, and network device

Номер патента: EP3962179B1. Автор: Weijie XU. Владелец: GUANGDONG OPPO MOBILE TELECOMMUNICATIONS CORP LTD. Дата публикации: 2024-09-04.

Methods and apparatus for implementing a speed sensitive mobile router

Номер патента: EP1700445A1. Автор: Samuel Lau. Владелец: Cisco Technology Inc. Дата публикации: 2006-09-13.

Methods and apparatus for implementing a speed sensitive mobile router

Номер патента: CA2546633A1. Автор: Samuel Lau. Владелец: Individual. Дата публикации: 2005-07-07.

Quality of service flow transmission method and apparatus, base station, terminal, and storage medium

Номер патента: EP4301035A1. Автор: Bo Dai,Jie Tan,Xiubin Sha,Ting Lu. Владелец: ZTE Corp. Дата публикации: 2024-01-03.

Data repetition transmission method and apparatus, storage medium, terminal and base station

Номер патента: US20230388053A1. Автор: Zhenzhu LEI. Владелец: Spreadtrum Semiconductor Nanjing Co Ltd. Дата публикации: 2023-11-30.

Data transmission method and apparatus, readable storage medium, terminal, and base station

Номер патента: US20240214143A1. Автор: Lifeng Han. Владелец: Spreadtrum Communications Shanghai Co Ltd. Дата публикации: 2024-06-27.

Methods and apparatus for implementing a speed sensitive mobile router

Номер патента: AU2004304588A1. Автор: Samuel Lau. Владелец: Cisco Technology Inc. Дата публикации: 2005-07-07.

Beacon sending and receiving methods and apparatus

Номер патента: US20240323822A1. Автор: Rong Li,Jun Wang,Yunfei Qiao,Tianhang YU. Владелец: Huawei Technologies Co Ltd. Дата публикации: 2024-09-26.

Method and apparatus for supporting multiple configuration grants for sidelink data transmission

Номер патента: US12010697B2. Автор: Lei Zhang,XIN Wang,Guorong Li. Владелец: Fujitsu Ltd. Дата публикации: 2024-06-11.

Report processing method and apparatus, network node and terminal

Номер патента: EP4383811A1. Автор: Aijuan Liu,Ruiwei WANG. Владелец: Datang Mobile Communications Equipment Co Ltd. Дата публикации: 2024-06-12.

Method and apparatus for downlink control information

Номер патента: US20240306187A1. Автор: Robert Mark Harrison,Zhipeng LIN. Владелец: Telefonaktiebolaget LM Ericsson AB. Дата публикации: 2024-09-12.

Air interface information security protection method and apparatus

Номер патента: US12089045B2. Автор: Fei Li,Juan DENG. Владелец: Huawei Technologies Co Ltd. Дата публикации: 2024-09-10.

Security protection method and apparatus for air interface information

Номер патента: EP4024930A1. Автор: Fei Li,Juan DENG. Владелец: Huawei Technologies Co Ltd. Дата публикации: 2022-07-06.

Information transmission and processing method and device

Номер патента: EP3188462A4. Автор: Huangwei Wu,Jiejing HUANG. Владелец: Huawei Technologies Co Ltd. Дата публикации: 2017-11-01.

Channel monitoring method and apparatus, terminal, and network device

Номер патента: EP4340500A1. Автор: Yuhua Wang,Hualei WANG. Владелец: Beijing Ziguang Zhanrui Communication Technology Co Ltd. Дата публикации: 2024-03-20.

Control information sending method and receiving method, base station, and terminal

Номер патента: EP3667979A1. Автор: Xin Su,Baojuan Guo. Владелец: China Academy of Telecommunications Technology CATT. Дата публикации: 2020-06-17.

Control information sending method and receiving method, base station, and terminal

Номер патента: US11431465B2. Автор: Xin Su,Baojuan Guo. Владелец: Datang Mobile Communications Equipment Co Ltd. Дата публикации: 2022-08-30.

Method and apparatus for parameter configuration

Номер патента: US12075320B2. Автор: Wenliang Xu. Владелец: Telefonaktiebolaget LM Ericsson AB. Дата публикации: 2024-08-27.

Method and apparatus for acquiring traffic feature analysis result, and network side device

Номер патента: EP4354806A4. Автор: Xiaobo Wu,Xiaowan KE. Владелец: Vivo Mobile Communication Co Ltd. Дата публикации: 2024-09-18.

Method and apparatus for triggering non-unicast service operation, and network functions

Номер патента: EP4284032A4. Автор: Zhenhua Xie,Xiaowan KE. Владелец: Vivo Mobile Communication Co Ltd. Дата публикации: 2024-07-31.

Pucch transmission method and apparatus, terminal and network side device

Номер патента: EP4325966A1. Автор: Qianqian SI,Xuejuan Gao. Владелец: Datang Mobile Communications Equipment Co Ltd. Дата публикации: 2024-02-21.

Clock synchronization method and communication apparatus

Номер патента: US20240244543A1. Автор: Wenjie Peng,Qiang Fan. Владелец: Huawei Technologies Co Ltd. Дата публикации: 2024-07-18.

Communication method and related device

Номер патента: EP3664505A1. Автор: Jian Zhang,Xun Tang,Wei Quan,Jinhua MIAO,Li Chai. Владелец: Huawei Technologies Co Ltd. Дата публикации: 2020-06-10.

CHANNEL STATE INFORMATION TRANSMISSION METHOD, COMMUNICATION DEVICE, AND APPARATUS

Номер патента: US20200366352A1. Автор: Gao Xuejuan,Si Qianqian. Владелец: . Дата публикации: 2020-11-19.

Information transmission and reception methods and apparatuses thereof

Номер патента: US20210345397A1. Автор: Lei Zhang,XIN Wang,Guorong Li. Владелец: Fujitsu Ltd. Дата публикации: 2021-11-04.

Information transmission and reception method and apparatus

Номер патента: US11678153B2. Автор: Chen Lu,HUI XU,Zijiang Ma,Yaying Wang,Xiangmo ZHAO,Jianfeng Ding,Zhongwei Ji,Fei HUI,Xiaoquan HUA. Владелец: ZTE Corp. Дата публикации: 2023-06-13.

Communication method and device

Номер патента: EP4422228A1. Автор: Yiling Wu,Chenwan LI,Yujian TANG. Владелец: Huawei Technologies Co Ltd. Дата публикации: 2024-08-28.

Communication method and device

Номер патента: US20240284519A1. Автор: Yiling Wu,Chenwan LI,Yujian TANG. Владелец: Huawei Technologies Co Ltd. Дата публикации: 2024-08-22.

Communication method and device

Номер патента: EP4429146A1. Автор: Haibo Xu,Jagdeep Singh Ahluwalia,Mengchen Zhang. Владелец: Huawei Technologies Co Ltd. Дата публикации: 2024-09-11.

Communication method and device

Номер патента: US20240313896A1. Автор: Haibo Xu,Jagdeep Singh Ahluwalia,Mengchen Zhang. Владелец: Huawei Technologies Co Ltd. Дата публикации: 2024-09-19.

Uplink access method and communication apparatus

Номер патента: EP4447520A1. Автор: Xueru Li,Hongli He. Владелец: Huawei Technologies Co Ltd. Дата публикации: 2024-10-16.

Pathloss reference signal determining method and related apparatus

Номер патента: US20240357513A1. Автор: Hong Li,LI ZHANG,Jing HAN,Zhongyi SHEN. Владелец: Huawei Technologies Co Ltd. Дата публикации: 2024-10-24.

Path loss reference signal determining method and related apparatus

Номер патента: EP4443798A1. Автор: Hong Li,LI ZHANG,Jing HAN,Zhongyi SHEN. Владелец: Huawei Technologies Co Ltd. Дата публикации: 2024-10-09.

Data transmission method, terminal, and network device

Номер патента: US11985654B2. Автор: Runhua Chen,Xin Su,Qiubin Gao,Qiuping Huang,Deshan Miao. Владелец: Datang Mobile Communications Equipment Co Ltd. Дата публикации: 2024-05-14.

Communication method, apparatus and system

Номер патента: EP3955633A1. Автор: LE Yan,Tingting GENG. Владелец: Huawei Technologies Co Ltd. Дата публикации: 2022-02-16.

Resource configuration method and communication apparatus

Номер патента: EP4383763A1. Автор: Lei Lu,Hongjia SU. Владелец: Huawei Technologies Co Ltd. Дата публикации: 2024-06-12.

Communication method and apparatus

Номер патента: EP3843431A1. Автор: Kai Zhou. Владелец: Huawei Technologies Co Ltd. Дата публикации: 2021-06-30.

Wireless communication method and device

Номер патента: US12075354B2. Автор: Hai Tang. Владелец: GUANGDONG OPPO MOBILE TELECOMMUNICATIONS CORP LTD. Дата публикации: 2024-08-27.

Method and apparatus for controlling communications terminal and corresponding communications terminal

Номер патента: US09800577B2. Автор: Jiashun SONG. Владелец: Tencent Technology Shenzhen Co Ltd. Дата публикации: 2017-10-24.

Prs-supporting sidelink power allocation method and apparatus, storage medium, and terminal

Номер патента: US20230403660A1. Автор: Meng Zhang. Владелец: Spreadtrum Communications Shanghai Co Ltd. Дата публикации: 2023-12-14.

Method and apparatus for pucch transmission,terminal and network-side device

Номер патента: US20240205917A1. Автор: Qianqian SI,Xuejuan Gao. Владелец: Datang Mobile Communications Equipment Co Ltd. Дата публикации: 2024-06-20.

Method and apparatus for notifying information change, terminal device, and network device

Номер патента: WO2023010287A1. Автор: 王淑坤. Владелец: Oppo广东移动通信有限公司. Дата публикации: 2023-02-09.

Data transmission method and apparatus

Номер патента: EP4301069A1. Автор: Zheng Yu,Xiaolei Tie,Zhe Jin,Hailong HOU,Zhihu LUO,Weilin Qu. Владелец: Huawei Technologies Co Ltd. Дата публикации: 2024-01-03.

Method and apparatus for managing mbs service, terminal device and network device

Номер патента: EP4156725A4. Автор: Jianhua Liu,Shukun Wang. Владелец: GUANGDONG OPPO MOBILE TELECOMMUNICATIONS CORP LTD. Дата публикации: 2023-08-23.

Tb ppdu transmission method and related apparatus

Номер патента: CA3229989A1. Автор: Jian Yu,Bo Gong,Ming GAN,Chenchen LIU. Владелец: Huawei Technologies Co Ltd. Дата публикации: 2023-03-02.

METHOD AND APPARATUS FOR MANAGING CONFERENCE CALL, TERMINAL AND NETWORK DEVICE

Номер патента: US20180183936A1. Автор: Chen Xianliang,He Yi,GAO Xichun,Cai Yuting. Владелец: . Дата публикации: 2018-06-28.

Method and apparatus for signaling interaction during switching process, and network device

Номер патента: WO2020082327A1. Автор: 卢前溪,尤心. Владелец: Oppo广东移动通信有限公司. Дата публикации: 2020-04-30.

Method and apparatus for controlling communication state, terminal, and network device

Номер патента: EP3962179A4. Автор: Weijie XU. Владелец: GUANGDONG OPPO MOBILE TELECOMMUNICATIONS CORP LTD. Дата публикации: 2022-06-22.

Synchronization signal block determining method and related apparatus

Номер патента: EP4099769A1. Автор: Mao Yan,Huang Huang,Kuandong GAO. Владелец: Huawei Technologies Co Ltd. Дата публикации: 2022-12-07.

Method and apparatus for determining default beam, user equipment, and network device

Номер патента: EP4274347A4. Автор: Mingju Li. Владелец: Beijing Xiaomi Mobile Software Co Ltd. Дата публикации: 2024-06-05.

DOWNLINK CONTROL INFORMATION TRANSMISSION AND RECEPTION METHODS AND DEVICES

Номер патента: US20200187172A1. Автор: Wang Lei,Cheng Fang-Chen,TONY Ekpenyong. Владелец: . Дата публикации: 2020-06-11.

Sidelink Information Transmission Device and Method and Communications System

Номер патента: US20180199312A1. Автор: ZHOU Hua,Xu Haibo,Wu Lianhai. Владелец: FUJITSU LIMITED. Дата публикации: 2018-07-12.

UPLINK CONTROL INFORMATION TRANSMISSION/CONFIGURATION INDICATION METHOD AND DEVICE, TERMINAL AND BASE STATION

Номер патента: US20190313397A1. Автор: Gao Bo,Chen Yijian,Lu Zhaohua,Li YuNgok. Владелец: . Дата публикации: 2019-10-10.

INFORMATION TRANSMISSION AND RECEIVING METHOD AND DEVICE, STORAGE MEDIUM AND ELECTRONIC DEVICE

Номер патента: US20200343959A1. Автор: Chen Yijian,Li Yu Ngok,Wu Hao,Lu Zhaohua,HAN Xianghui. Владелец: . Дата публикации: 2020-10-29.

Control information transmission and reception method and device

Номер патента: JP7194835B2. Автор: ジャン,シンウェイ,ジャン,ジンファン. Владелец: Huawei Technologies Co Ltd. Дата публикации: 2022-12-22.

Information transmission and processing method and device, equipment, terminal and system

Номер патента: CN108401226B. Автор: 黄琛. Владелец: ZTE Corp. Дата публикации: 2021-11-30.

Transmission method and apparatus, storage medium, and terminal

Номер патента: WO2022188512A1. Автор: 沈兴亚. Владелец: 展讯通信(上海)有限公司. Дата публикации: 2022-09-15.

Precoding information transmission and receiving methods and devices

Номер патента: CN102255703A. Автор: 王建国,周永行. Владелец: Huawei Technologies Co Ltd. Дата публикации: 2011-11-23.

Information transmission and receiving method and device, storage medium and electronic device

Номер патента: US11558094B2. Автор: Hao Wu,Yijian Chen,Zhaohua Lu,Yu Ngok Li,Xianghui HAN. Владелец: ZTE Corp. Дата публикации: 2023-01-17.

Antenna information transmission and reception method and device

Номер патента: CN105580466A. Автор: 吴晔,毕晓艳,余荣道,陈大庚,乔德礼. Владелец: Huawei Technologies Co Ltd. Дата публикации: 2016-05-11.

Data packet transmission method and apparatus, storage medium and terminal

Номер патента: WO2020238519A1. Автор: 赵育仁,徐彦超,余庆华. Владелец: 展讯通信(上海)有限公司. Дата публикации: 2020-12-03.

Signaling transmission method and apparatus, base station, and terminal

Номер патента: EP3668256B1. Автор: Chen Lu,Hao Wu,Fang Xie. Владелец: ZTE Corp. Дата публикации: 2024-02-14.

Data packet transmission method and apparatus, storage medium and terminal

Номер патента: EP3979733A4. Автор: Chinghwa YU,Yanchao XU,Yuhren JAUH. Владелец: Spreadtrum Communications Shanghai Co Ltd. Дата публикации: 2022-07-13.

Signaling transmission method and apparatus, base station, and terminal

Номер патента: EP3668256A4. Автор: Chen Lu,Hao Wu,Fang Xie. Владелец: ZTE Corp. Дата публикации: 2021-05-12.

Random access method, apparatus and device

Номер патента: EP4044744A1. Автор: Bin Wang,Rong Li,Jun Wang,Hejia LUO,Xiaolu Wang. Владелец: Huawei Technologies Co Ltd. Дата публикации: 2022-08-17.

Identifier Allocation Method and Apparatus

Номер патента: US20220007270A1. Автор: Guowei OUYANG,Xiaojuan Li,Yiru KUANG. Владелец: Huawei Technologies Co Ltd. Дата публикации: 2022-01-06.

Identifier allocation method and apparatus

Номер патента: EP3855776A1. Автор: Guowei OUYANG,Xiaojuan Li,Yiru KUANG. Владелец: Huawei Technologies Co Ltd. Дата публикации: 2021-07-28.

Wireless Access Method and Apparatus, Communications System, and Terminal

Номер патента: US20180041949A1. Автор: Zhou Yongxing,LIU Kunpeng,ZHANG Leiming. Владелец: . Дата публикации: 2018-02-08.

Data Scheduling Method and Apparatus, Base Station, and Terminal

Номер патента: US20160242200A1. Автор: Yan Zhiyu,Ma Sha. Владелец: . Дата публикации: 2016-08-18.

INFORMATION RETRANSMISSION METHOD AND APPARATUS, BASE STATION, AND TERMINAL

Номер патента: US20210352644A1. Автор: Zhou Juejia. Владелец: BEIJING XIAOMI MOBILE SOFTWARE CO., LTD.. Дата публикации: 2021-11-11.

Wireless Access Method and Apparatus, Communications System, and Terminal

Номер патента: US20200389840A1. Автор: Zhou Yongxing,LIU Kunpeng,ZHANG Leiming. Владелец: . Дата публикации: 2020-12-10.

Data scheduling method and apparatus, base station, and terminal

Номер патента: KR101766706B1. Автор: 샤 마,즈위 옌. Владелец: 후아웨이 테크놀러지 컴퍼니 리미티드. Дата публикации: 2017-08-23.

Data receiving method and apparatus, storage medium and terminal

Номер патента: WO2021088506A1. Автор: 周化雨,潘振岗,沈兴亚. Владелец: 展讯通信(上海)有限公司. Дата публикации: 2021-05-14.

Interference detection method and apparatus, storage medium, and terminal

Номер патента: WO2021120466A1. Автор: 罗丽云,李开. Владелец: 锐迪科微电子科技(上海)有限公司. Дата публикации: 2021-06-24.

Bearer mapping method and apparatus, base station, and terminal

Номер патента: EP3667982A4. Автор: Li Chen,MENG Xu,Jing Liang,Fangli XU. Владелец: China Academy of Telecommunications Technology CATT. Дата публикации: 2020-08-12.

Bearer mapping method and apparatus, base station, and terminal

Номер патента: EP3667982B1. Автор: Li Chen,MENG Xu,Jing Liang,Fangli XU. Владелец: Datang Mobile Communications Equipment Co Ltd. Дата публикации: 2023-11-22.

Data scheduling method and apparatus

Номер патента: US20210168835A1. Автор: Jinlin Peng,Zhenfei Tang,Jiehua Xiao. Владелец: Huawei Technologies Co Ltd. Дата публикации: 2021-06-03.

Method and device for sharing channel occupancy time, terminal device, and network device

Номер патента: EP4014633B1. Автор: Hao Lin. Владелец: GUANGDONG OPPO MOBILE TELECOMMUNICATIONS CORP LTD. Дата публикации: 2024-01-17.

Switching method and apparatus, storage medium, and terminal

Номер патента: EP4152820A4. Автор: Min Xu. Владелец: Spreadtrum Communications Shanghai Co Ltd. Дата публикации: 2023-11-08.

Communication method and apparatus

Номер патента: AU2022428809A1. Автор: MENG Li,Yanmei Yang,ShengFeng XU. Владелец: Huawei Technologies Co Ltd. Дата публикации: 2024-06-06.

METHOD AND APPARATUS FOR VIRTUALIZING SIM CARD, TERMINAL AND NETWORK SIDE DEVICE

Номер патента: US20180192281A1. Автор: Jiang Ping,Zhang Huawei,WANG Xupeng,Wang Canguo. Владелец: . Дата публикации: 2018-07-05.

Data Transmission Method and Apparatus

Номер патента: US20230345517A1. Автор: Haibo Xu,Lixia Xue,Yifan Xue,Mengchen Zhang. Владелец: Huawei Technologies Co Ltd. Дата публикации: 2023-10-26.

Data transmission method and device, and storage medium

Номер патента: US11902839B2. Автор: Ning Yang,Qianxi Lu,Xin You. Владелец: GUANGDONG OPPO MOBILE TELECOMMUNICATIONS CORP LTD. Дата публикации: 2024-02-13.

Multi-connectivity communication method and device

Номер патента: US11805564B2. Автор: Xiaoli Shi,Hongzhuo Zhang. Владелец: Huawei Technologies Co Ltd. Дата публикации: 2023-10-31.

Data transmission method and device, and storage medium

Номер патента: US20210195474A1. Автор: Ning Yang,Qianxi Lu,Xin You. Владелец: GUANGDONG OPPO MOBILE TELECOMMUNICATIONS CORP LTD. Дата публикации: 2021-06-24.

Session establishment method and apparatus

Номер патента: US20200205226A1. Автор: Chunshan Xiong,Anni Wei,Ruizhi Liu. Владелец: Huawei Technologies Co Ltd. Дата публикации: 2020-06-25.

Beam selection method and apparatus

Номер патента: CA3137192A1. Автор: YONG Cheng,Bin Liu,Cen Ling,Xiaoyong Yu. Владелец: Huawei Technologies Co Ltd. Дата публикации: 2020-10-29.

Paging method and apparatus

Номер патента: EP4304255A1. Автор: Lei Chen,Zonghui XIE,Hongyu XIANG. Владелец: Huawei Technologies Co Ltd. Дата публикации: 2024-01-10.

DATA TRANSMISSION METHOD FOR TERMINAL PERFORMING NEAR FIELD COMMUNICATION AND TERMINAL THEREOF

Номер патента: US20140057561A1. Автор: KO Jae-woo,WI Tae-hwan. Владелец: SAMSUNG ELECTRONICS CO., LTD.. Дата публикации: 2014-02-27.

Processing Method and Processing Device for Communication Information of Terminal and Terminal

Номер патента: US20170195482A1. Автор: Yang Lun. Владелец: . Дата публикации: 2017-07-06.

Data scheduling method, apparatus, and system

Номер патента: US11991713B2. Автор: Jun Li,Zhe Jin,Zhihu LUO. Владелец: Huawei Technologies Co Ltd. Дата публикации: 2024-05-21.

Data transmission method and device, network side equipment and terminal equipment

Номер патента: CN110831166B. Автор: 赵思聪. Владелец: Meizu Technology Co Ltd. Дата публикации: 2022-08-12.

Network access method and system, communication apparatus, and network side device

Номер патента: EP4109976A4. Автор: RUI Ni,Qian Zhu,Yi Lv. Владелец: Huawei Technologies Co Ltd. Дата публикации: 2023-08-09.

Beam selection method and apparatus

Номер патента: US11791889B2. Автор: YONG Cheng,Bin Liu,Cen Ling,Xiaoyong Yu. Владелец: Huawei Technologies Co Ltd. Дата публикации: 2023-10-17.

Method and apparatus for parameter configuration

Номер патента: EP3884698A1. Автор: Wenliang Xu. Владелец: Telefonaktiebolaget LM Ericsson AB. Дата публикации: 2021-09-29.

Communication Method, Communication Apparatus, And Device

Номер патента: US20220022251A1. Автор: FENG HAN,Shuigen Yang,Yinghao JIN,Chuan MA. Владелец: Huawei Technologies Co Ltd. Дата публикации: 2022-01-20.

Data Transmission Method And Device

Номер патента: US20200068543A1. Автор: LU Rong,Yong Liu. Владелец: Huawei Technologies Co Ltd. Дата публикации: 2020-02-27.

Routing information updating method, communication apparatus and storage medium

Номер патента: EP4207686A1. Автор: Bo Zhang. Владелец: Huawei Technologies Co Ltd. Дата публикации: 2023-07-05.

Downlink Pilot Transmitting Method and Device, Detection Method and Device, evolved Node B and Terminal

Номер патента: US20170264412A1. Автор: Chen Yijian,Li Yu Ngok,Lu Zhaohua,Yu Guanghui. Владелец: . Дата публикации: 2017-09-14.

Resource allocation method and device, and base station and terminal

Номер патента: EP3780816B1. Автор: Lei Wang. Владелец: Datang Mobile Communications Equipment Co Ltd. Дата публикации: 2023-05-03.

Method, apparatus and storage medium for receiving a PDCCH

Номер патента: US11824697B2. Автор: Huang Huang,Yalin Liu,Sainan LI. Владелец: Huawei Technologies Co Ltd. Дата публикации: 2023-11-21.

Auxiliary-link-based call compensation system and apparatus, and chip

Номер патента: EP4106479A1. Автор: Zhifeng Wang,Yinyuan JIA,Weilin Gong. Владелец: Huawei Technologies Co Ltd. Дата публикации: 2022-12-21.

Method and system for service denial and termination on a wireless network

Номер патента: US20120191854A1. Автор: Marvin Bienn,Jayshree Bharatia. Владелец: ROCKSTAR BIDCO LP. Дата публикации: 2012-07-26.

CONTROL INFORMATION SENDING METHOD AND RECEIVING METHOD, BASE STATION, AND TERMINAL

Номер патента: US20200213070A1. Автор: Su Xin,GUO Baojuan. Владелец: CHINA ACADEMY OF TELECOMUNICATIONS TECHNOLOGY. Дата публикации: 2020-07-02.

METHOD AND DEVICE FOR RANDOM ACCESS AND TERMINAL

Номер патента: US20200252971A1. Автор: Pan Xueming,Yang Xiaodong,Chen Li,Ma Yue,WU Yumin. Владелец: VIVO MOBILE COMMUNICATION CO.,LTD.. Дата публикации: 2020-08-06.

CHANNEL RESOURCE ALLOCATION METHOD AND COMPUTER READABLE STORAGE MEDIUM AND TERMINAL

Номер патента: US20210337562A1. Автор: HUANG Su. Владелец: . Дата публикации: 2021-10-28.

Bearer mapping method and device thereof, base station and terminal

Номер патента: US20200367091A1. Автор: Li Chen,MENG Xu,Jing Liang,Fangli XU. Владелец: China Academy of Telecommunications Technology CATT. Дата публикации: 2020-11-19.

Data sending and processing method and device, network side equipment and terminal

Номер патента: CN108933641B. Автор: 徐俊,许进,彭佛才,谢赛锦,陈梦竹,韩翠红. Владелец: ZTE Corp. Дата публикации: 2022-10-11.

Vehicle positioning method and device, vehicle, storage medium and terminal

Номер патента: CN111770472A. Автор: 颜廷管. Владелец: GUANGDONG OPPO MOBILE TELECOMMUNICATIONS CORP LTD. Дата публикации: 2020-10-13.

Method and system for service denial and termination on a wireless network

Номер патента: CN1836422B. Автор: 佳施利·巴拉特拉,马文·比恩. Владелец: Nortel Networks Corp. Дата публикации: 2012-01-11.

Method and device for selecting resources and terminal equipment

Номер патента: CN114868430A. Автор: 卢前溪,林晖闵,赵振山. Владелец: GUANGDONG OPPO MOBILE TELECOMMUNICATIONS CORP LTD. Дата публикации: 2022-08-05.

Augmented reality display method and device for indoor environment and terminal equipment

Номер патента: CN111028358A. Автор: 肖斌,侯松林. Владелец: Shenzhen Research Institute HKPU. Дата публикации: 2020-04-17.

Uplink resource scheduling method and device, network side equipment and terminal equipment

Номер патента: CN110662295B. Автор: 董贤东. Владелец: Meizu Technology Co Ltd. Дата публикации: 2022-09-20.

A kind of control signaling sending method and control signaling processing unit and terminal

Номер патента: CN103379594B. Автор: 张晓丹,鲁照华,刘锟,宁迪浩. Владелец: ZTE Corp. Дата публикации: 2018-01-30.

Uplink resource scheduling method and device, network side equipment and terminal equipment

Номер патента: CN110662295A. Автор: 董贤东. Владелец: Meizu Technology Co Ltd. Дата публикации: 2020-01-07.

Method and device for random access and terminal

Номер патента: US11343855B2. Автор: Li Chen,Xueming PAN,Xiaodong Yang,Yue Ma,Yumin Wu. Владелец: Vivo Mobile Communication Co Ltd. Дата публикации: 2022-05-24.

Firmware upgrading method and system, readable storage medium and terminal equipment

Номер патента: CN110875850B. Автор: 胡碧广. Владелец: Zdst Communication Technology Co ltd. Дата публикации: 2022-07-29.

Method and device for implementing calibration, and terminal

Номер патента: CN102025410B. Автор: 刘伟. Владелец: ST Ericsson Semiconductor Beijing Co Ltd. Дата публикации: 2014-04-23.

Transmission method of transmission indication signal, network equipment and terminal

Номер патента: CN110933764A. Автор: 吴凯,孙鹏,潘学明. Владелец: Vivo Mobile Communication Co Ltd. Дата публикации: 2020-03-27.

Methods and apparatus to manage power consumption in wireless local area network devices

Номер патента: US8045576B2. Автор: Artur Zaks,Yossi Tsfaty,Avraham Baum. Владелец: Texas Instruments Inc. Дата публикации: 2011-10-25.

Transmission processing method and device, network side equipment and terminal

Номер патента: CN113973267B. Автор: 王飞,李岩,杨拓. Владелец: China Mobile Communications Ltd Research Institute. Дата публикации: 2023-07-25.

Display and transmission method, identity authentication and data transmission device and terminal

Номер патента: CN110602679B. Автор: 李静,李求实. Владелец: Bank of China Ltd. Дата публикации: 2022-11-25.

Method and device for data sharing and terminal

Номер патента: CN103761083A. Автор: 张慧敏,傅佳莉. Владелец: Huawei Technologies Co Ltd. Дата публикации: 2014-04-30.

Method and apparatus for controlling service acquisition in a local area network device

Номер патента: AU2002336723A1. Автор: Andrew William Hull. Владелец: Motorola Inc. Дата публикации: 2003-06-17.

Method and apparatus for determining uplink transmission timing

Номер патента: US11832203B2. Автор: Hyunseok RYU,Peng XUE,Hyunkyu Yu,Sangwon Choi. Владелец: SAMSUNG ELECTRONICS CO LTD. Дата публикации: 2023-11-28.

Auxiliary-Link-Based Call Compensation System and Apparatus, and Chip

Номер патента: US20230132875A1. Автор: Zhifeng Wang,Yinyuan JIA,Weilin Gong. Владелец: Huawei Technologies Co Ltd. Дата публикации: 2023-05-04.

Pdcch monitoring method and apparatus, storage medium, terminal, and base station

Номер патента: EP4231555A1. Автор: Huan ZHOU. Владелец: Beijing Ziguang Zhanrui Communication Technology Co Ltd. Дата публикации: 2023-08-23.

Pdcch monitoring method and apparatus, storage medium, terminal, and base station

Номер патента: US20230389030A1. Автор: Huan ZHOU. Владелец: Beijing Ziguang Zhanrui Communication Technology Co Ltd. Дата публикации: 2023-11-30.

Retransmitted data sending method, retransmitted data receiving method, and apparatus

Номер патента: US20220060280A1. Автор: Xun Yang,Shimon SHILO,Ming GAN. Владелец: Huawei Technologies Co Ltd. Дата публикации: 2022-02-24.

Data unit transmitting method and receiving method, and devices

Номер патента: EP3996300A1. Автор: Ming GAN. Владелец: Huawei Technologies Co Ltd. Дата публикации: 2022-05-11.

Wireless power transfer method, apparatus and system

Номер патента: US20170117757A1. Автор: Yongcheol Park. Владелец: LG ELECTRONICS INC. Дата публикации: 2017-04-27.

Service information pushing and receiving method, and related apparatus and system

Номер патента: US09497598B2. Автор: Haibo LIU. Владелец: Huawei Device Co Ltd. Дата публикации: 2016-11-15.

Method and system for reporting mobility parameters of UE, UE and network equipment thereof

Номер патента: US20150172970A1. Автор: Lei Mao,Yunpeng Cui,Qian Dai,Yingqi Xu. Владелец: ZTE Corp. Дата публикации: 2015-06-18.

Method and device for multiplexing uplink grant resources

Номер патента: CA3049699C. Автор: Ning Yang,Jianhua Liu. Владелец: GUANGDONG OPPO MOBILE TELECOMMUNICATIONS CORP LTD. Дата публикации: 2022-10-18.

Mode control method and apparatus for multi-mode terminal, and multi-mode terminal

Номер патента: EP3407651A1. Автор: Hua Li. Владелец: ZTE Corp. Дата публикации: 2018-11-28.

Receiving method and sending method of synchronization signal block, terminal and network side equipment

Номер патента: CN111836380B. Автор: 周帅. Владелец: Vivo Mobile Communication Co Ltd. Дата публикации: 2022-08-02.

Communication method and apparatus

Номер патента: EP4319219A1. Автор: MIAO Yang,Yong Wu,Mingchao Li,Linlin SUI. Владелец: Huawei Technologies Co Ltd. Дата публикации: 2024-02-07.

Location method and communication apparatus

Номер патента: EP4236505A1. Автор: Jianjun Qiu,Lihong JIANG,Haichao WEN. Владелец: Huawei Technologies Co Ltd. Дата публикации: 2023-08-30.

Authentication method and communication apparatus

Номер патента: EP4258718A1. Автор: Yishan Xu,Haoren ZHU,Hualin ZHU. Владелец: Huawei Technologies Co Ltd. Дата публикации: 2023-10-11.

Clock synchronization method and communication apparatus

Номер патента: EP4366212A1. Автор: Wenjie Peng,Qiang Fan. Владелец: Huawei Technologies Co Ltd. Дата публикации: 2024-05-08.

Communication method, apparatus, and system

Номер патента: US11757746B2. Автор: Yan Li,Fang Yu,Feng Yu. Владелец: Huawei Technologies Co Ltd. Дата публикации: 2023-09-12.

Method and device for determining transmission power

Номер патента: EP4240066A2. Автор: Bo Gao,Yuxin Wang,Zhaohua Lu,Chuangxin JIANG,Ke YAO. Владелец: ZTE Corp. Дата публикации: 2023-09-06.

Method and device for verifying sidelink resources, and user equipment

Номер патента: EP4427521A1. Автор: Huei-Ming Lin. Владелец: GUANGDONG OPPO MOBILE TELECOMMUNICATIONS CORP LTD. Дата публикации: 2024-09-11.

Data processing method and communication apparatus

Номер патента: US20240348300A1. Автор: YE Yang,Senbao Guo,Guibao Li,Piegang Jiang. Владелец: Huawei Technologies Co Ltd. Дата публикации: 2024-10-17.

Data processing method, and communication device

Номер патента: EP4443758A1. Автор: YE Yang,Peigang JIANG,Senbao Guo,Guibao Li. Владелец: Huawei Technologies Co Ltd. Дата публикации: 2024-10-09.

Authentication method and communication apparatus

Номер патента: AU2022210153A9. Автор: Fei Li. Владелец: Huawei Technologies Co Ltd. Дата публикации: 2024-09-26.

Control information sending method and detecting method, base station, terminal, and storage medium

Номер патента: US11979868B2. Автор: Peng Hao,Hao Wu,Yijian Chen,Zhaohua Lu,Yungok Li. Владелец: ZTE Corp. Дата публикации: 2024-05-07.

Terminal apparatus and information processing method

Номер патента: US09756451B2. Автор: Dong Li,Zhiqiang He,Chentao Yu. Владелец: Lenovo Beijing Ltd. Дата публикации: 2017-09-05.

Method and device for transmitting system information

Номер патента: CA3047480C. Автор: Ning Yang,Yanan Lin. Владелец: GUANGDONG OPPO MOBILE TELECOMMUNICATIONS CORP LTD. Дата публикации: 2023-02-21.

Communication method and related device

Номер патента: EP3565320A1. Автор: Qinghai Zeng,Tingting GENG. Владелец: Huawei Technologies Co Ltd. Дата публикации: 2019-11-06.

Methods and devices for wake-up signal

Номер патента: WO2023230989A1. Автор: Lei Chen,Gang Wang. Владелец: NEC Corporation. Дата публикации: 2023-12-07.

Random access resource processing method and device

Номер патента: US11825513B2. Автор: Li Chen. Владелец: Vivo Mobile Communication Co Ltd. Дата публикации: 2023-11-21.

Random access resource processing method and device

Номер патента: US20240032090A1. Автор: Li Chen. Владелец: Vivo Mobile Communication Co Ltd. Дата публикации: 2024-01-25.

Communication method and communications apparatus for PC5 V2X

Номер патента: US11943835B2. Автор: Xiao Xiao,MENG Li,Jiangwei YING. Владелец: Huawei Technologies Co Ltd. Дата публикации: 2024-03-26.

Random access resource processing method and device

Номер патента: EP3668223A1. Автор: Li Chen. Владелец: Vivo Mobile Communication Co Ltd. Дата публикации: 2020-06-17.

Random Access Resource Processing Method And Device

Номер патента: US20200214035A1. Автор: Li Chen. Владелец: Vivo Mobile Communication Co Ltd. Дата публикации: 2020-07-02.

Random access resource processing method and device

Номер патента: US20240023158A1. Автор: Li Chen. Владелец: Vivo Mobile Communication Co Ltd. Дата публикации: 2024-01-18.

Component Carrier Grouping Method and Device

Номер патента: US20200008076A1. Автор: Fan Wang,Jinlin Peng,Hao Tang. Владелец: Huawei Technologies Co Ltd. Дата публикации: 2020-01-02.

Resource configuration method and communication apparatus

Номер патента: US20240205902A1. Автор: Lei Lu,Hongjia SU. Владелец: Huawei Technologies Co Ltd. Дата публикации: 2024-06-20.

SIGNAL TRANSMISSION METHOD FOR MTC AND APPARATUS FOR SAME

Номер патента: US20160150462A1. Автор: Yang Suckchel,Ahn Joonkui,YI Yunjung,YOU Hyangsun. Владелец: LG ELECTRONICS INC.. Дата публикации: 2016-05-26.

Signal transmission method for mtc and apparatus for same

Номер патента: CN105393599A. Автор: 李润贞,安俊基,柳向善,梁锡喆. Владелец: LG ELECTRONICS INC. Дата публикации: 2016-03-09.

Power control method and apparatus, and service node, terminal and storage medium

Номер патента: WO2021228175A1. Автор: 张楠,胡林曦,印亚超,崔方宇. Владелец: 中兴通讯股份有限公司. Дата публикации: 2021-11-18.

Power control method and apparatus, and service node, terminal and storage medium

Номер патента: EP4152836A4. Автор: Nan Zhang,Fangyu CUI,Linxi HU,Yachao YIN. Владелец: ZTE Corp. Дата публикации: 2024-06-12.

Method and system for managing and controlling wired terminal, and access server

Номер патента: EP2574093A4. Автор: Changjun Zhao,Guojun Tang. Владелец: ZTE Corp. Дата публикации: 2017-11-01.

METHOD AND AND APPARATUS FOR TRANSMITTING CONTROL INFORMATION IN WIRELESS COMMUNICATION SYSTEM

Номер патента: US20130100919A1. Автор: Chung Jae Hoon,Lee Hyun Woo,Han Seung Hee. Владелец: . Дата публикации: 2013-04-25.

METHOD AND APPARATUS FOR HUMAN-MACHINE INTERACTION, TERMINAL AND COMPUTER-READABLE STORAGE MEDIUM

Номер патента: US20200050274A1. Автор: Ding Xiang,Gao Xueli. Владелец: . Дата публикации: 2020-02-13.

METHODS AND APPARATUS FOR OBTAINING SYSTEM MESSAGE, TERMINAL, AND BASE STATION

Номер патента: US20200128476A1. Автор: Jiang Haitao,HUANG William Xiao-Qing,WANG Zhenkai. Владелец: . Дата публикации: 2020-04-23.

METHOD AND APPARATUS FOR PUSHING NOTIFICATION, MOBILE TERMINAL, AND GRAPHICAL USER INTERFACE

Номер патента: US20210227069A1. Автор: LI Dawei,HUANG Xueyan,Wang Yongning,Ding Ning,Ye Bo,ZHU Guo. Владелец: . Дата публикации: 2021-07-22.

METHOD AND APPARATUS FOR DETERMINING POSITION OF TERMINAL, AND STORAGE MEDIUM

Номер патента: US20210235412A1. Автор: Dai Bo,LIU Kun,Yang Weiwei,CHEN Xianming. Владелец: . Дата публикации: 2021-07-29.

METHOD AND APPARATUS FOR COMMUNICATION BETWEEN A TERMINAL AND A SERVER

Номер патента: US20210352614A1. Автор: YU Xiaobo,TAO Zhen. Владелец: . Дата публикации: 2021-11-11.

Method and apparatus for processing si request, terminal and storage medium

Номер патента: US20210400565A1. Автор: Xiaowei Jiang. Владелец: Beijing Xiaomi Mobile Software Co Ltd. Дата публикации: 2021-12-23.

Method and apparatus for identification of portable terminal and USIM card

Номер патента: KR100609705B1. Автор: 정교일,전성익,신진아. Владелец: 한국전자통신연구원. Дата публикации: 2006-08-09.

Pucch transmission method, user equipment and apparatus

Номер патента: WO2019029287A1. Автор: 高雪娟. Владелец: 电信科学技术研究院有限公司. Дата публикации: 2019-02-14.

Method and apparatus for determining position of terminal, and storage medium

Номер патента: US11218987B2. Автор: Kun Liu,Bo Dai,Weiwei Yang,Xianming Chen. Владелец: Xian Zhongxing New Software Co Ltd. Дата публикации: 2022-01-04.

Ppdu transmission method and related apparatus

Номер патента: CA3221882A1. Автор: Jian Yu,Bo Gong,Yunbo Li,Ming GAN,Chenchen LIU,Yuxin Lu. Владелец: Huawei Technologies Co Ltd. Дата публикации: 2022-12-15.

Ppdu transmission method and related apparatus

Номер патента: EP4336937A1. Автор: Jian Yu,Bo Gong,Yunbo Li,Ming GAN,Chenchen LIU,Yuxin Lu. Владелец: Huawei Technologies Co Ltd. Дата публикации: 2024-03-13.

Data transmission method and communication apparatus

Номер патента: EP4333509A1. Автор: FAN Wei,Lei Wang,Yan Chen,Xiuqiang Xu. Владелец: Huawei Technologies Co Ltd. Дата публикации: 2024-03-06.

Communication method, communication apparatus and computer-readable storage medium

Номер патента: EP4093065A1. Автор: Feng Wang,Xu Zhang,Lixia Xue. Владелец: Huawei Technologies Co Ltd. Дата публикации: 2022-11-23.

Uplink transmission method and communication apparatus

Номер патента: EP3917267A1. Автор: Li Zhao,Mingzeng Dai,Qinghai Zeng,Chunhua YOU. Владелец: Huawei Technologies Co Ltd. Дата публикации: 2021-12-01.

Tb ppdu transmission method and related device

Номер патента: EP4383634A1. Автор: Jian Yu,Bo Gong,Ming GAN,Chenchen LIU. Владелец: Huawei Technologies Co Ltd. Дата публикации: 2024-06-12.

Information transmission method and communication apparatus

Номер патента: EP4401366A1. Автор: Zhaohui Cai,Yunshuai TANG,Ju Yan Pan,ting wu Wang,Huawei YUE,Ruinan DENG. Владелец: Huawei Technologies Co Ltd. Дата публикации: 2024-07-17.

Communication method, network device, and terminal

Номер патента: US20200119851A1. Автор: Ruixiang MA,Yongxia Lyu. Владелец: Huawei Technologies Co Ltd. Дата публикации: 2020-04-16.

Routing transmission method and apparatus

Номер патента: EP4254881A1. Автор: Lei Li,Lili Wang,Haibo Wang,Jun Ge. Владелец: Huawei Technologies Co Ltd. Дата публикации: 2023-10-04.

Information Transmission Method And Device

Номер патента: US20190349131A1. Автор: Chen Xu,Gongzheng ZHANG,Hejia LUO,Yinggang Du,Shengchen DAI. Владелец: Huawei Technologies Co Ltd. Дата публикации: 2019-11-14.

Information transmission, information display method and information display apparatus

Номер патента: US20030002488A1. Автор: Kunihiro Hyakutake. Владелец: Individual. Дата публикации: 2003-01-02.

Decoding device, information transmission system, decoding method, and non-transitory computer readable medium

Номер патента: US20170264319A1. Автор: Tsutomu Hamada. Владелец: Fuji Xerox Co Ltd. Дата публикации: 2017-09-14.

Method and system for correlation of internet application domain identities and network device identifiers

Номер патента: US09621625B2. Автор: Alexey D. Zinin. Владелец: CINARRA SYSTEMS. Дата публикации: 2017-04-11.

Analyses and topology visualizations of network devices and networks

Номер патента: US20240235943A1. Автор: Karthikeyan Muthusamy,Abilash K. Menon,Payal Vraijal Gothi. Владелец: Arista Networks Inc. Дата публикации: 2024-07-11.

System for tracking the history of channel based network devices

Номер патента: EP1081900A3. Автор: Douglas Moeller. Владелец: Nortel Networks Ltd. Дата публикации: 2004-03-17.

Method for video communications and terminal, server and system for video communications

Номер патента: US09973829B2. Автор: Zhongnan Li,Hao NIAN. Владелец: Tencent Technology Shenzhen Co Ltd. Дата публикации: 2018-05-15.

Data blind retransmission method and apparatus, storage medium, and terminal device

Номер патента: EP4117212A4. Автор: Jia SHENG,Xiaoxue YIN. Владелец: Huizhou TCL Mobile Communication Co Ltd. Дата публикации: 2024-04-03.

Call connection method and apparatus, storage medium, and terminal

Номер патента: EP4093004A4. Автор: Junjie Deng. Владелец: GUANGDONG OPPO MOBILE TELECOMMUNICATIONS CORP LTD. Дата публикации: 2023-07-19.

Feedback Information Transmission and Reception Method and Apparatus and Communication System

Номер патента: US20190215128A1. Автор: WANG Xin,Zhang Jian,Ji Pengyu. Владелец: FUJITSU LIMITED. Дата публикации: 2019-07-11.

System, method, and device for providing application service

Номер патента: US09848038B2. Автор: Zhiming Zhu,Mingrong CAO,Chengkai HE. Владелец: Huawei Technologies Co Ltd. Дата публикации: 2017-12-19.

Program verification method and apparatus, platform, user terminal, and online service system

Номер патента: US12032697B2. Автор: QIANG LI,Hui Xie,Yueyang ZHANG. Владелец: Cloudminds Robotics Co Ltd. Дата публикации: 2024-07-09.

Method and device for starting debugging port of terminal, and terminal

Номер патента: EP3001653A4. Автор: Ninghua Peng. Владелец: ZTE Corp. Дата публикации: 2016-06-22.

INFORMATION TRANSMISSION DEVICE AND METHOD AND INFORMATION RECEIVING DEVICE AND METHOD

Номер патента: FR2777144A1. Автор: Philippe Piret,Dantec Claude Le. Владелец: Canon Inc. Дата публикации: 1999-10-08.

Information transmission and display method and information display apparatus

Номер патента: EP1411725A3. Автор: Kunihiro Hyakutake. Владелец: Infocity KK. Дата публикации: 2004-05-19.

Methods and devices for exchanging peer parameters between network devices

Номер патента: EP1566040A2. Автор: Praveen Jain,Tushar Desai,Shashank Gupta,Kalyan K. Ghosh. Владелец: Cisco Technology Inc. Дата публикации: 2005-08-24.

Methods and devices for exchanging peer parameters between network devices

Номер патента: WO2004051938A3. Автор: Praveen Jain,Tushar Desai,Shashank Gupta,Kalyan K Ghosh. Владелец: Andiamo Systems Inc. Дата публикации: 2004-08-26.

Methods and devices for exchanging peer parameters between network devices

Номер патента: WO2004051938A2. Автор: Praveen Jain,Tushar Desai,Shashank Gupta,Kalyan K. Ghosh. Владелец: CISCO TECHNOLOGY, INC.. Дата публикации: 2004-06-17.

Method and apparatus for indicating reference signal, terminal, and network device

Номер патента: US20220077987A1. Автор: Chuanfeng He. Владелец: GUANGDONG OPPO MOBILE TELECOMMUNICATIONS CORP LTD. Дата публикации: 2022-03-10.

Method and apparatus for service request, negotiation and response, and network device and system

Номер патента: WO2020029954A1. Автор: 章璐. Владелец: 中兴通讯股份有限公司. Дата публикации: 2020-02-13.

Method and apparatus for indicating reference signal, terminal, and network device

Номер патента: EP3961953A1. Автор: Chuanfeng He. Владелец: GUANGDONG OPPO MOBILE TELECOMMUNICATIONS CORP LTD. Дата публикации: 2022-03-02.

Method and apparatus for service request, negotiation and response, and network device and system

Номер патента: EP3832969A4. Автор: LU Zhang. Владелец: ZTE Corp. Дата публикации: 2021-09-08.

Signal transmission method and apparatus, terminal, and access network device

Номер патента: EP4274111A1. Автор: Wei Bai. Владелец: Datang Mobile Communications Equipment Co Ltd. Дата публикации: 2023-11-08.

Reference signal generation method, reference signal detection method, and communications apparatus

Номер патента: US12074743B2. Автор: Yi Wang,Zhenyu Shi. Владелец: Huawei Technologies Co Ltd. Дата публикации: 2024-08-27.

Virus feature extraction method and system, and storage medium and terminal

Номер патента: EP4184358A4. Автор: Kaizhi Wei,Enyang GUAN,Wenxiang LIANG. Владелец: Sangfor Technologies Co Ltd. Дата публикации: 2024-08-21.

INSTRUCTION INFORMATION TRANSMISSION AND RECEPTION METHODS AND DEVICES THEREOF

Номер патента: US20160255072A1. Автор: Liu Ruopeng. Владелец: KUANG-CHI INTELLIGENT PHOTONIC TECHNOLOGY LTD.. Дата публикации: 2016-09-01.

Instruction information transmission and reception methods and devices thereof

Номер патента: EP3070602A1. Автор: Ruopeng Liu. Владелец: Kuang Chi Intelligent Photonic Technology Ltd. Дата публикации: 2016-09-21.

DECODING DEVICE, INFORMATION TRANSMISSION SYSTEM, DECODING METHOD, AND NON-TRANSITORY COMPUTER READABLE MEDIUM

Номер патента: US20170222752A1. Автор: HAMADA Tsutomu. Владелец: FUJI XEROX CO., LTD.. Дата публикации: 2017-08-03.

DECODING DEVICE, INFORMATION TRANSMISSION SYSTEM, DECODING METHOD, AND NON-TRANSITORY COMPUTER READABLE MEDIUM

Номер патента: US20170264319A1. Автор: HAMADA Tsutomu. Владелец: FUJI XEROX CO., LTD.. Дата публикации: 2017-09-14.

Method and apparatus for communication between two communication devices

Номер патента: EP4055990A1. Автор: Kai Chen,Jun Deng,Xin Dai. Владелец: Telefonaktiebolaget LM Ericsson AB. Дата публикации: 2022-09-14.

SCREEN-OFF CONTROL METHOD AND APPARATUS, STORAGE MEDIUM, AND TERMINAL

Номер патента: US20200074956A1. Автор: Zhou Yibao. Владелец: . Дата публикации: 2020-03-05.

Methods and apparatus for establishing dynamic tunnel access sessions in a communication network

Номер патента: AU1098301A. Автор: Joel E. Short. Владелец: Nomadix Inc. Дата публикации: 2001-05-08.

Handwriting data synchronous method and apparatus, storage medium and terminal device

Номер патента: CN107196956A. Автор: 陆晖. Владелец: Guangzhou Shizhen Information Technology Co Ltd. Дата публикации: 2017-09-22.

Data blind retransmission method and apparatus, storage medium, and terminal device

Номер патента: US20230082566A1. Автор: Jia SHENG,Xiaoxue YIN. Владелец: Huizhou TCL Mobile Communication Co Ltd. Дата публикации: 2023-03-16.

Method and apparatus for periodical protocol packet transmission by network device

Номер патента: US9667479B2. Автор: Ji Zhou. Владелец: ZTE Corp. Дата публикации: 2017-05-30.

Method and Apparatus for Interconnectivity between Legacy Security Systems and Networked Multimedia Security Surveillance System

Номер патента: US20130262640A1. Автор: Monroe David A.. Владелец: . Дата публикации: 2013-10-03.

Methods and Systems for Reducing Supply and Termination Noise

Номер патента: US20110019760A1. Автор: Huy M. Nguyen. Владелец: RAMBUS INC. Дата публикации: 2011-01-27.

Method and apparatus for bit synchronization in optical communication and networking systems

Номер патента: CA2333421A1. Автор: Howard L. Davidson. Владелец: Individual. Дата публикации: 2000-01-13.

Method and system for aggregating communications

Номер патента: WO2010091506A1. Автор: Gustav Gerald Vos,Vasilios Vasilios Daskalopoulos. Владелец: Sierra Wirless, Inc.. Дата публикации: 2010-08-19.

Method and apparatus for bit synchronization in optical communication and networking systems

Номер патента: US20010019440A1. Автор: Howard Davidson. Владелец: Sun Microsystems Inc. Дата публикации: 2001-09-06.

Method and apparatus for bit synchronization in optical communication and networking systems

Номер патента: WO2000002334A2. Автор: Howard L. Davidson. Владелец: SUN MICROSYSTEMS, INC.. Дата публикации: 2000-01-13.

Method and system for correlation of internet application domain identities and network device identifiers

Номер патента: US20150019721A1. Автор: Alexey D. Zinin. Владелец: CINARRA SYSTEMS. Дата публикации: 2015-01-15.

METHOD AND DEVICE FOR TESTING SCREEN FLUENCY OF TERMINAL, AND TERMINAL DEVICE

Номер патента: US20190200008A1. Автор: Wang Chao. Владелец: Zhuhai Juntian Electronic Technology Co., Ltd.. Дата публикации: 2019-06-27.

Method and device for fingerprint identification by using terminal and terminal

Номер патента: CN107103288B. Автор: 韩延罡. Владелец: Nanjing Car Chain Technology Co Ltd. Дата публикации: 2020-12-18.

Method and device for cleaning up resources of terminal and terminal

Номер патента: CN104199913A. Автор: 罗鹏. Владелец: Beijing Kingsoft Internet Security Software Co Ltd. Дата публикации: 2014-12-10.

Photographing control method and device of terminal equipment, and terminal equipment

Номер патента: CN106375676A. Автор: 谭国辉. Владелец: GUANGDONG OPPO MOBILE TELECOMMUNICATIONS CORP LTD. Дата публикации: 2017-02-01.

Interaction method and device for terminal application and terminal

Номер патента: CN110896424B. Автор: 朱钰,郝志坚,曹广. Владелец: ZTE Corp. Дата публикации: 2022-03-29.

A method and system for evaluating user s quality of experience and network device

Номер патента: EP2244426A4. Автор: Qi Wang,Ying Liu. Владелец: Huawei Technologies Co Ltd. Дата публикации: 2011-02-23.

Cleanup method and device for terminal resource and terminal

Номер патента: WO2016029807A1. Автор: 罗鹏. Владелец: 北京金山安全软件有限公司. Дата публикации: 2016-03-03.

Dmrs port indication method and apparatus

Номер патента: US20230318776A1. Автор: Kunpeng Liu,Xianda LIU. Владелец: Huawei Technologies Co Ltd. Дата публикации: 2023-10-05.

Signal transmission method and device, terminal and access network device

Номер патента: US20240063853A1. Автор: Wei Bai. Владелец: Datang Mobile Communications Equipment Co Ltd. Дата публикации: 2024-02-22.

Spanning tree support in a high performance network device

Номер патента: EP1005738A1. Автор: Ariel Hendel,Shimon Muller. Владелец: Sun Microsystems Inc. Дата публикации: 2000-06-07.

Spanning tree support in a high performance network device

Номер патента: EP1005738A4. Автор: Ariel Hendel,Shimon Muller. Владелец: Sun Microsystems Inc. Дата публикации: 2006-01-25.

METHOD AND DEVICE FOR CONFIGURING AND MANAGING NETWORK ELEMENT EQUIPMENT, AND NETWORK ELEMENT EQUIPMENT

Номер патента: US20160277239A1. Автор: QU Yanfeng,LIU Guoman. Владелец: ZTE CORPORATION. Дата публикации: 2016-09-22.

Method and device for restoring factory configuration of network equipment and network equipment

Номер патента: CN113726581B. Автор: 周赟,罗潇,雷歆,康培建. Владелец: Huawei Technologies Co Ltd. Дата публикации: 2022-09-23.

Throttling distributed statistical data retrieval in a network device

Номер патента: US7349960B1. Автор: Peter Pothier,Anne K Winiewicz,Darryl Black. Владелец: Ciena Corp. Дата публикации: 2008-03-25.

Method, apparatus, and system for data transmission

Номер патента: US09838462B2. Автор: Jishang Yang. Владелец: Huawei Technologies Co Ltd. Дата публикации: 2017-12-05.

Information generation method and apparatus, and information use method and apparatus

Номер патента: US20240201312A1. Автор: Yong Wu,Jianqin Liu,Wenkai FEI. Владелец: Huawei Technologies Co Ltd. Дата публикации: 2024-06-20.

METHOD AND APPARATUS FOR GENERATNG CODEBOOKS AND ASSOCIATED DATA IN A NETWORK DEVICE

Номер патента: US20140056380A1. Автор: Wu Lu,Yang Hongwei,Xiong Zhilan. Владелец: ALCATEL LUCENT. Дата публикации: 2014-02-27.

Method and system for displaying advertisement, and terminal device and server

Номер патента: WO2017101339A1. Автор: 徐开礼. Владелец: 乐视网信息技术(北京)股份有限公司. Дата публикации: 2017-06-22.

Method and apparatus for generating codebooks and associated data in a network device

Номер патента: WO2012146982A1. Автор: Lu Wu,Hongwei Yang,Zhilan XIONG. Владелец: ALCATEL LUCENT. Дата публикации: 2012-11-01.

Left and right channel switching method and device, readable storage medium and terminal

Номер патента: CN108391205B. Автор: 严笔祥. Владелец: GUANGDONG OPPO MOBILE TELECOMMUNICATIONS CORP LTD. Дата публикации: 2021-01-22.

Method and System for Determining Initiator and Terminator in Forwarding Adjacency Label Switched Path

Номер патента: US20120134296A1. Автор: Xuefeng Lin. Владелец: ZTE Corp. Дата публикации: 2012-05-31.

MIMO COMMUNICATION METHOD, AND BASE STATION APPARATUS AND TERMINAL

Номер патента: US20200099424A1. Автор: KUSUNOKI Shigeo. Владелец: SONY CORPORATION. Дата публикации: 2020-03-26.

CALLING METHOD AND DEVICE, COMPUTER STORAGE MEDIUM, AND TERMINAL

Номер патента: US20190104079A1. Автор: WANG Fengling. Владелец: TENCENT TECHNOLOGY (SHENZHEN) COMPANY LIMITED. Дата публикации: 2019-04-04.

MIMO COMMUNICATION METHOD, AND BASE STATION APPARATUS AND TERMINAL

Номер патента: US20150358056A1. Автор: KUSUNOKI Shigeo. Владелец: SONY CORPORATION. Дата публикации: 2015-12-10.

MIMO COMMUNICATION METHOD, AND BASE STATION APPARATUS AND TERMINAL

Номер патента: US20180351614A1. Автор: KUSUNOKI Shigeo. Владелец: SONY CORPORATION. Дата публикации: 2018-12-06.

Method and system for determining initiator and terminator in forwarding adjacency label switched path

Номер патента: EP2466813A1. Автор: Xuefeng Lin. Владелец: ZTE Corp. Дата публикации: 2012-06-20.

Sound effect compensation method and device, readable storage medium and terminal

Номер патента: CN108430003B. Автор: 严笔祥. Владелец: GUANGDONG OPPO MOBILE TELECOMMUNICATIONS CORP LTD. Дата публикации: 2020-01-14.

Image sensor, signal acquisition method and circuit thereof, storage medium and terminal

Номер патента: CN111918003B. Автор: 戴亚翔,黄品儒. Владелец: Shanghai Harvest Intelligence Tech Co Ltd. Дата публикации: 2022-11-25.

Method and apparatus for providing service of external network to home network device

Номер патента: KR101732189B1. Автор: 이주열,김준형,한세희. Владелец: 삼성전자주식회사. Дата публикации: 2017-05-02.

Intelligent pairing method and system for virtual machine and terminal

Номер патента: CN108632118B. Автор: 邓书芬. Владелец: GCI Science and Technology Co Ltd. Дата публикации: 2021-01-12.

Network Storage Apparatus and Method for Controlling thereof, and Network Storage System

Номер патента: KR101221152B1. Автор: 이호윤,권세종. Владелец: 삼성에스디에스 주식회사. Дата публикации: 2013-01-10.

Method and device for signal transmission, and terminal

Номер патента: WO2020238859A1. Автор: 李景,林景球. Владелец: 维沃移动通信有限公司. Дата публикации: 2020-12-03.

Image processing method and device, computer readable medium and terminal equipment

Номер патента: CN111432156A. Автор: 刘宇宁,白政英. Владелец: Chengdu Oppo Communication Technology Co ltd. Дата публикации: 2020-07-17.

Turbo code decoding control method and device, computer readable medium and terminal

Номер патента: CN108736900B. Автор: 李俊强,蔡晓,仲崇祥. Владелец: Spreadtrum Communications Shanghai Co Ltd. Дата публикации: 2021-08-24.

A kind of transmission method of internet of things data, system and terminal

Номер патента: CN108965484A. Автор: 姜仕鹏,张中月,孙岳,倪安,谢岸辉. Владелец: SHENZHEN CDS COMMUNICATION Co Ltd. Дата публикации: 2018-12-07.

Method and device for direction measurement and terminal

Номер патента: RU2618949C2. Автор: Инь ЧЖУ,Сяовэй ХУ,Вэй ХАН. Владелец: Сяоми Инк.. Дата публикации: 2017-05-12.

Access access control method and device based on role and terminal credibility

Номер патента: CN110061987B. Автор: 赵波,李想,朱晓南,黎佳玥,金泽浩. Владелец: Wuhan University WHU. Дата публикации: 2021-03-16.

Beam tracking method and device, computer storage medium and terminal equipment

Номер патента: CN110212963B. Автор: 杨鑫. Владелец: GUANGDONG OPPO MOBILE TELECOMMUNICATIONS CORP LTD. Дата публикации: 2022-04-15.

Communication antenna, control method and device of communication antenna and terminal

Номер патента: CN105977614B. Автор: 薛宗林,王霖川,熊晓峰. Владелец: Beijing Xiaomi Mobile Software Co Ltd. Дата публикации: 2020-02-07.

Photography processing method and device for camera module, and terminal apparatus

Номер патента: WO2018196698A1. Автор: 曾元清. Владелец: Oppo广东移动通信有限公司. Дата публикации: 2018-11-01.

Touch key, anti-misoperation control method and device for touch key and terminal

Номер патента: CN106547395B. Автор: 骆俊谕,史华艳. Владелец: Hisense Electric Co Ltd. Дата публикации: 2020-04-03.

Method and system for determining initiator and terminator in forwarding adjacency label switched path

Номер патента: EP2466813B1. Автор: Xuefeng Lin. Владелец: ZTE Corp. Дата публикации: 2019-03-06.

Image processing method and system, readable storage medium, and terminal

Номер патента: WO2020011112A1. Автор: 吴炽强. Владелец: 奇酷互联网络科技(深圳)有限公司. Дата публикации: 2020-01-16.

MIMO communication method, and base station apparatus and terminal

Номер патента: US11245447B2. Автор: Shigeo Kusunoki. Владелец: Sony Corp. Дата публикации: 2022-02-08.

MIMO communication method and base station apparatus and terminal

Номер патента: CN105281815A. Автор: 楠繁雄. Владелец: Sony Corp. Дата публикации: 2016-01-27.

Method and system for determining initiator and terminator in forwarding adjacency label switched path

Номер патента: EP2466813A4. Автор: Xuefeng Lin. Владелец: ZTE Corp. Дата публикации: 2014-04-09.

Voice signal processing method and device, readable storage medium and terminal

Номер патента: CN108540660B. Автор: 张海平. Владелец: GUANGDONG OPPO MOBILE TELECOMMUNICATIONS CORP LTD. Дата публикации: 2020-08-04.

Method and system for adding contacts, and terminal

Номер патента: CN104333643A. Автор: 谢东,崔欣宇. Владелец: Tencent Technology Shenzhen Co Ltd. Дата публикации: 2015-02-04.

Dark light imaging method and device, readable storage medium and terminal equipment

Номер патента: CN112087556B. Автор: 孟俊彪. Владелец: Wuhan TCL Group Industrial Research Institute Co Ltd. Дата публикации: 2023-04-07.

Mimo communication method, and base station apparatus and terminal

Номер патента: EP2953274A1. Автор: Shigeo Kusunoki. Владелец: Sony Corp. Дата публикации: 2015-12-09.

Method and system for determining initiator and terminator in forwarding adjacency label switched path

Номер патента: WO2011017946A1. Автор: 林雪峰. Владелец: 中兴通讯股份有限公司. Дата публикации: 2011-02-17.

Method and apparatus for information display, and storage medium

Номер патента: EP4312110A1. Автор: Zetan PEI,Baolin Wu. Владелец: Beijing Xiaomi Mobile Software Co Ltd. Дата публикации: 2024-01-31.

Path computation method, message responding method, and related device

Номер патента: US20200244574A1. Автор: Feng Li,Hong Zhou,Qin Wu,Yue YIN. Владелец: Huawei Technologies Co Ltd. Дата публикации: 2020-07-30.

Attack defense method and apparatus for terminal, terminal, and cloud server

Номер патента: US20200387600A1. Автор: Yang Xu,Yingliang Yao,Zhi KANG,Zhuochen WANG. Владелец: Huawei Technologies Co Ltd. Дата публикации: 2020-12-10.

Path computation method, message responding method, and related device

Номер патента: US20170054634A1. Автор: Feng Li,Hong Zhou,Qin Wu,Yue YIN. Владелец: Huawei Technologies Co Ltd. Дата публикации: 2017-02-23.

Path computation method, message responding method, and related device

Номер патента: US20190097923A1. Автор: Feng Li,Hong Zhou,Qin Wu,Yue YIN. Владелец: Huawei Technologies Co Ltd. Дата публикации: 2019-03-28.

Method and system for realizing mode switch between instant messaging and network conference

Номер патента: CN102185870B. Автор: 胡加明. Владелец: Suzhou Codyy Network Technology Co Ltd. Дата публикации: 2012-06-20.

Data reporting method and related device

Номер патента: US20210216685A1. Автор: Rui Chen,Di Su,Xinning DAI. Владелец: Huawei Technologies Co Ltd. Дата публикации: 2021-07-15.

Method and device to manage an object and parts thereof

Номер патента: EP1899775A1. Автор: Urmas Tangsoo. Владелец: Mirovar OU. Дата публикации: 2008-03-19.

Service processing method and related apparatus

Номер патента: US20240193677A1. Автор: YU Zhou,Lili Liu,Fangming LIU,Xiaohan HUA. Владелец: Huawei Technologies Co Ltd. Дата публикации: 2024-06-13.

Distributed access control method and related apparatus and system

Номер патента: EP4277213A1. Автор: Zhewen MAO,Bingfei REN. Владелец: Huawei Technologies Co Ltd. Дата публикации: 2023-11-15.

Display method and display apparatus

Номер патента: US12047633B2. Автор: HUI Zhang,Xiaoming SHAO,Cunfang Hu. Владелец: Hisense Visual Technology Co Ltd. Дата публикации: 2024-07-23.

Method and device for acquiring image, terminal and computer-readable storage medium

Номер патента: US20190215455A1. Автор: Heng SUN. Владелец: Beijing Xiaomi Mobile Software Co Ltd. Дата публикации: 2019-07-11.

Image display device and method and image communication apparatus and method

Номер патента: US20030050952A1. Автор: Kunihiro Yamamoto. Владелец: Individual. Дата публикации: 2003-03-13.

Display method and display apparatus

Номер патента: US20230020264A1. Автор: HUI Zhang,Xiaoming SHAO,Cunfang Hu. Владелец: Hisense Visual Technology Co Ltd. Дата публикации: 2023-01-19.

Frequency agile spread waveform generator and method and pre-processor apparatus and method

Номер патента: WO2003043178A3. Автор: Daniel Yap,Keyvan Sayyah. Владелец: Hrl Lab Llc. Дата публикации: 2004-04-22.

Alerting method and device, apparatus and computer storage medium

Номер патента: AU2021204558A1. Автор: Xinxin Wang,Miao OUYANG. Владелец: Sensetime International Pte Ltd. Дата публикации: 2023-01-19.

Video processing method, video playing method and related apparatus

Номер патента: EP4446985A1. Автор: Lina Zhang,Chenguang Zhang,Xiaogang Qu,Zhonggang YUE. Владелец: Huawei Technologies Co Ltd. Дата публикации: 2024-10-16.

Communication method and communication apparatus

Номер патента: US20240333619A1. Автор: Yaoguang Wang,Longyu CAO,Xietian HUANG,Fangyu YE. Владелец: Huawei Technologies Co Ltd. Дата публикации: 2024-10-03.

Communication method and communication apparatus

Номер патента: EP4422140A1. Автор: Yaoguang Wang,Longyu CAO,Xietian HUANG,Fangyu YE. Владелец: Huawei Technologies Co Ltd. Дата публикации: 2024-08-28.

Photographing method and related apparatus

Номер патента: EP4460027A1. Автор: Jirun XU. Владелец: Honor Device Co Ltd. Дата публикации: 2024-11-06.

Image recording apparatus and method, and image playback apparatus and method

Номер патента: US09990955B2. Автор: Koichi Okada,Kurumi Mori,Michinori Nakajima. Владелец: Canon Inc. Дата публикации: 2018-06-05.

Image recording apparatus and method, and image playback apparatus and method

Номер патента: US09544530B2. Автор: Koichi Okada,Kurumi Mori,Michinori Nakajima. Владелец: Canon Inc. Дата публикации: 2017-01-10.

Sla performance prediction method and related apparatus, and device

Номер патента: EP4262166A1. Автор: Li Chen,Xi Peng,Gong Zhang. Владелец: Huawei Technologies Co Ltd. Дата публикации: 2023-10-18.

Image processing apparatus and method, and image capturing apparatus and control method thereof, program, and storage medium

Номер патента: GB202206275D0. Автор: . Владелец: Canon Inc. Дата публикации: 2022-06-15.

Disc recording method and disc recording apparatus, and disc-shaped recording medium

Номер патента: US20010012246A1. Автор: Makoto Mitsuno. Владелец: Sony Corp. Дата публикации: 2001-08-09.

Apparatus and method for inductively powering and networking a rail of a firearm

Номер патента: WO2012109746A1. Автор: David Walter Compton,Gary Edward Crocker. Владелец: Colt Canada Corporation. Дата публикации: 2012-08-23.

Apparatus and method for inductively powering and networking a rail of a firearm

Номер патента: EP2676097A1. Автор: David Walter Compton,Gary Edward Crocker. Владелец: Colt Canada Corp. Дата публикации: 2013-12-25.

Reference signal generation method, reference signal detection method, and communications apparatus

Номер патента: CA3135511C. Автор: Yi Wang,Zhenyu Shi. Владелец: Huawei Technologies Co Ltd. Дата публикации: 2024-02-27.

Method for determining the operations performed on packets by a network device

Номер патента: US20070189178A1. Автор: David White,Madhusudan Challa,Iqlas Ottamalika. Владелец: Cisco Technology Inc. Дата публикации: 2007-08-16.

Method and system for enrolling a camera into a video surveillance system

Номер патента: US12002338B2. Автор: Francis JOLIVET. Владелец: Genetec Inc. Дата публикации: 2024-06-04.

Data transmission method, data receiving method and communication apparatus

Номер патента: EP4387135A1. Автор: Pengpeng DONG,Zhiyuan Tan,Huiying Zhu. Владелец: Huawei Technologies Co Ltd. Дата публикации: 2024-06-19.

METHOD AND APPARATUS FOR SCREEN CONTROL BETWEEN TERMINALS AND STORAGE MEDIUM

Номер патента: US20180253179A1. Автор: Chen Cong,Zhao Ke. Владелец: . Дата публикации: 2018-09-06.

Method and System for Processing Lifelong Learning of Terminal and Apparatus

Номер патента: US20160299755A1. Автор: Yang Qiang,He Xiuqiang,SONG Yangqiu. Владелец: . Дата публикации: 2016-10-13.

METHOD AND APPARATUS FOR MANAGING VIDEO DATA, TERMINAL, AND SERVER

Номер патента: US20170300503A1. Автор: Xie Yan,WANG Da,CHENG Yue. Владелец: . Дата публикации: 2017-10-19.

Login authentication method and apparatus based on face recognition, terminal and server

Номер патента: WO2017193912A1. Автор: 葛长军. Владелец: 中兴通讯股份有限公司. Дата публикации: 2017-11-16.

Method, apparatus and system for securely transmitting data

Номер патента: EP4258628A1. Автор: Zhijian LIANG,Zhigui Wei,Conger CHEN. Владелец: Huawei Technologies Co Ltd. Дата публикации: 2023-10-11.

Automatic communications between networked devices such as televisions and mobile devices

Номер патента: US20170264974A1. Автор: David Harrison. Владелец: Individual. Дата публикации: 2017-09-14.

Collective communication method, apparatus, and system

Номер патента: US11818033B2. Автор: Tao Wu,Jian Yan,Fei Chen,Heyang Liu,Xitong Jia,Xiangyu Gong. Владелец: Huawei Technologies Co Ltd. Дата публикации: 2023-11-14.

Communication method, apparatus and system

Номер патента: EP4231538A1. Автор: Huang Huang. Владелец: Huawei Technologies Co Ltd. Дата публикации: 2023-08-23.

Data transmission method, and communication apparatus

Номер патента: EP4283932A1. Автор: Min Zha,Qichang Chen,Dongdong HE. Владелец: Huawei Technologies Co Ltd. Дата публикации: 2023-11-29.

Collective communication method, apparatus, and system

Номер патента: US20220094625A1. Автор: Tao Wu,Jian Yan,Fei Chen,Heyang Liu,Xitong Jia,Xiangyu Gong. Владелец: Huawei Technologies Co Ltd. Дата публикации: 2022-03-24.

Precoding matrix indicator feedback method and communication apparatus

Номер патента: EP4380068A1. Автор: Lei GUAN,Shengyu LI. Владелец: Huawei Technologies Co Ltd. Дата публикации: 2024-06-05.

Collective communication method, apparatus and system

Номер патента: EP3968583A1. Автор: Tao Wu,Jian Yan,Fei Chen,Heyang Liu,Xitong Jia,Xiangyu Gong. Владелец: Huawei Technologies Co Ltd. Дата публикации: 2022-03-16.

Collective communication method, apparatus, and system

Номер патента: US20240056381A1. Автор: Tao Wu,Jian Yan,Fei Chen,Heyang Liu,Xitong Jia,Xiangyu Gong. Владелец: Huawei Technologies Co Ltd. Дата публикации: 2024-02-15.

Precoding matrix indicator feedback method and communication apparatus

Номер патента: US20240204834A1. Автор: Lei GUAN,Shengyu LI. Владелец: Huawei Technologies Co Ltd. Дата публикации: 2024-06-20.

Fully polarized antenna control method and apparatus, storage medium and terminal device

Номер патента: EP4421995A1. Автор: Kai Zheng,Xuan Luo,Zubing WU,Fanyu GUO. Владелец: Chengdu T Ray Technology Co Ltd. Дата публикации: 2024-08-28.

Method and device for flash control and terminal

Номер патента: RU2635836C2. Автор: Вэй Сунь,Фэн ГО,Дань Чжу. Владелец: Сяоми Инк.. Дата публикации: 2017-11-16.

Tracker tracking method and system, photovoltaic apparatus and medium

Номер патента: US20240258961A1. Автор: Peng Quan,Ming Zhao,Kai Sun,Guokun Huang. Владелец: Trina Solar Co Ltd. Дата публикации: 2024-08-01.

Control method and control device for aroma diffuser, mobile terminal, and storage medium

Номер патента: US20220276772A1. Автор: Andy Lee. Владелец: Puzhen Life Co Ltd. Дата публикации: 2022-09-01.

System and apparatus for network device heat management

Номер патента: US20150124404A1. Автор: Lin Shen,Timothy Lee,Stephen Ong,Mark Siechen. Владелец: Cisco Technology Inc. Дата публикации: 2015-05-07.

System and apparatus for network device heat management

Номер патента: US09509092B2. Автор: Lin Shen,Timothy Lee,Stephen Ong,Mark Siechen. Владелец: Cisco Technology Inc. Дата публикации: 2016-11-29.

POLAR CODE DECODING METHOD AND APPARATUS, STORAGE MEDIUM, AND TERMINAL

Номер патента: US20220311453A1. Автор: Shi Guangming. Владелец: . Дата публикации: 2022-09-29.

Power supply system, method and chip of terminal equipment and terminal equipment

Номер патента: CN110429673B. Автор: 朱建伟,赵春江,张成旭,孙霓. Владелец: Huawei Technologies Co Ltd. Дата публикации: 2021-10-01.

System and apparatus for network device heat management

Номер патента: EP3066908A1. Автор: Lin Shen,Timothy Lee,Stephen Ong,Mark Siechen. Владелец: Cisco Technology Inc. Дата публикации: 2016-09-14.

System and apparatus for network device heat management

Номер патента: WO2015069526A1. Автор: Lin Shen,Timothy Lee,Stephen Ong,Mark Siechen. Владелец: CISCO TECHNOLOGY, INC.. Дата публикации: 2015-05-14.

DISPLAY, METHOD AND JIG FOR MAKING DISPLAY, AND TERMINAL EQUIPMENT

Номер патента: US20220085325A1. Автор: LI RUI,Wang Yuanjing,SHAO Haitao,SHI Zhenhua. Владелец: BEIJING XIAOMI MOBILE SOFTWARE CO., LTD.. Дата публикации: 2022-03-17.

Methods and Systems for Reducing Supply and Termination Noise

Номер патента: US20140285232A1. Автор: Kyung Suk Oh. Владелец: RAMBUS INC. Дата публикации: 2014-09-25.

Harmonic compensation method and device of PFC circuit and terminal equipment

Номер патента: CN112003462B. Автор: 卢雄伟,陈威龙,许永志,唐新雨. Владелец: Zhangzhou Kehua Technology Co Ltd. Дата публикации: 2021-10-29.

Harmonic compensation method and device of PFC circuit and terminal equipment

Номер патента: CN112019006B. Автор: 陈海飞,卢雄伟,许永志,唐新雨. Владелец: Kehua Data Co Ltd. Дата публикации: 2021-10-01.

Light control method and device, readable storage medium and terminal equipment

Номер патента: CN111800923A. Автор: 贺平,龚飞,陈东波. Владелец: Shenzhen Shengrui Technology Co ltd. Дата публикации: 2020-10-20.

Method and apparatus for making a battery terminal and a battery terminal made thereby

Номер патента: US5814421A. Автор: Bernard N. Spiegelberg,Mark E. Sauter. Владелец: Tulip Corp. Дата публикации: 1998-09-29.

Chip reversing device and chip reversing method, and chip mounting apparatus and chip mounting method

Номер патента: WO2007021029A3. Автор: Yoichi Makino,Akira Kabeshita. Владелец: Akira Kabeshita. Дата публикации: 2007-06-28.

Decoding method, and memory storage apparatus and memory control circuit unit using the same

Номер патента: US09973213B2. Автор: Yu-Hua Hsiao,Heng-Lin Yen,Ming-Yu Tsai. Владелец: Epostar Electronics Corp. Дата публикации: 2018-05-15.

Recommending method and apparatus, storage medium, and terminal device

Номер патента: EP3678067A1. Автор: Kai Sun,Dongfeng Wu. Владелец: Beijing Baidu Netcom Science And Technology Co Ltd. Дата публикации: 2020-07-08.

Convolution acceleration operation method and apparatus, storage medium and terminal device

Номер патента: US11748595B2. Автор: Liqiang Yi. Владелец: Shenzhen Intellifusion Technologies Co Ltd. Дата публикации: 2023-09-05.

Image fusion method and apparatus, storage medium, and terminal

Номер патента: US20220327674A1. Автор: Ruirong YOU. Владелец: Spreadtrum Communications Shanghai Co Ltd. Дата публикации: 2022-10-13.

Browser Page Display Method and Apparatus, Storage Medium and Terminal

Номер патента: US20200042568A1. Автор: Jiang Zeng. Владелец: GUANGDONG OPPO MOBILE TELECOMMUNICATIONS CORP LTD. Дата публикации: 2020-02-06.

Split screen interaction method and device, electronic apparatus and readable storage medium

Номер патента: US20230195275A1. Автор: Ken Wen. Владелец: BOE Technology Group Co Ltd. Дата публикации: 2023-06-22.

Method and apparatus for presenting images, mobile terminal and computer storage medium

Номер патента: US09619102B2. Автор: ZHENG Lin. Владелец: Tencent Technology Shenzhen Co Ltd. Дата публикации: 2017-04-11.

Method and apparatus for displaying virtual scene, terminal, and storage medium

Номер патента: US12029978B2. Автор: Kang Zhang,Qingchun LU,Xun Hu,jia cheng Wei. Владелец: Tencent Technology Shenzhen Co Ltd. Дата публикации: 2024-07-09.

Method and apparatus for adding map element, terminal, and storage medium

Номер патента: US20220161137A1. Автор: Qi SANG. Владелец: Tencent Technology Shenzhen Co Ltd. Дата публикации: 2022-05-26.

Method and apparatus for adding map element, terminal, and storage medium

Номер патента: US11983840B2. Автор: Qi SANG. Владелец: Tencent Technology Shenzhen Co Ltd. Дата публикации: 2024-05-14.

Method and arrangement for remote controlling a power consumption state of a network device

Номер патента: US09727116B2. Автор: Patrick Oscar Y. Decherf. Владелец: BARCO NV. Дата публикации: 2017-08-08.

Method and apparatus for controlling flight assembly, terminal, and readable storage medium

Номер патента: US20240370023A1. Автор: Lei Li. Владелец: Vivo Mobile Communication Co Ltd. Дата публикации: 2024-11-07.

Graphical programming method, system and apparatus, medium, processor and terminal

Номер патента: US20220374210A1. Автор: Ge Xiong,Luo Sha LIU,Xiao Yue PANG,Zi Jia WANG. Владелец: Siemens Ltd China. Дата публикации: 2022-11-24.

Graphical programming method, system and apparatus, medium, processor and terminal

Номер патента: EP3913518A1. Автор: Ge Xiong,Luo Sha LIU,Xiao Yue PANG,Zi Jia WANG. Владелец: Siemens Ltd China. Дата публикации: 2021-11-24.

Method and apparatus for displaying interactive item, terminal, and storage medium

Номер патента: US12048880B2. Автор: Jinhao YANG,Lingyun LIN. Владелец: Tencent Technology Shenzhen Co Ltd. Дата публикации: 2024-07-30.

Graphical bookmark realization method and device for embedded browser, and Terminal

Номер патента: US20150089378A1. Автор: Lei Pan. Владелец: ZTE Corp. Дата публикации: 2015-03-26.

Traveling path boundary determination method and device, vehicle, storage medium, and terminal

Номер патента: EP4335710A1. Автор: XU Ran,Bin Wang,Rui Wang,Si Liu. Владелец: Momenta Suzhou Technology Co Ltd. Дата публикации: 2024-03-13.

Visual tracking method and device, unmanned aerial vehicle and terminal device

Номер патента: US20180143637A1. Автор: Yu Tian,Wenyan Jiang. Владелец: Shanghai Hang Seng Electronic Technology Co ltd. Дата публикации: 2018-05-24.

Methods and compositions utilizing a branch and terminate algorithm for protein design

Номер патента: WO2001016862A3. Автор: Stephen L Mayo,David B Gordon. Владелец: California Inst Of Techn. Дата публикации: 2002-01-03.

Semantic segmentation method and apparatus for three-dimensional image, terminal, and storage medium

Номер патента: US11861501B2. Автор: Sihong Chen. Владелец: Tencent Technology Shenzhen Co Ltd. Дата публикации: 2024-01-02.

Tensor calculation unit and use method, and data processing apparatus and operation method

Номер патента: EP4446870A1. Автор: Hang ZUO. Владелец: Hygon Information Technology Co Ltd. Дата публикации: 2024-10-16.

Method and apparatus for displaying search page, terminal and storage medium

Номер патента: US20210216604A1. Автор: Xiao Wang. Владелец: Beijing Ocean Engine Network Technology Co Ltd. Дата публикации: 2021-07-15.

Edge detection method and device, electronic apparatus and storage medium

Номер патента: US12100160B2. Автор: Qing Li,Qingsong XU. Владелец: Hangzhou Glority Software Ltd. Дата публикации: 2024-09-24.

Information processing method and device, electronic apparatus and storage medium

Номер патента: US20240338392A1. Автор: Jinxiang Wang,Yuanhui LIANG. Владелец: Beijing Zitiao Network Technology Co Ltd. Дата публикации: 2024-10-10.

Audio processing method and audio processing apparatus, and training method

Номер патента: US09830896B2. Автор: Jun Wang,Lie Lu. Владелец: Dolby Laboratories Licensing Corp. Дата публикации: 2017-11-28.

Document processing method and document processing apparatus, and recording medium

Номер патента: US20060236229A1. Автор: Katashi Nagao. Владелец: Individual. Дата публикации: 2006-10-19.

Document processing method and document processing apparatus, and recording medium

Номер патента: US7930309B2. Автор: Katashi Nagao. Владелец: Sony Corp. Дата публикации: 2011-04-19.

Target detection apparatus and method and vehicle control apparatus and method

Номер патента: US11454704B2. Автор: Jung Hwan Choi,Han Byul LEE. Владелец: HL Klemove Corp. Дата публикации: 2022-09-27.

Power Supply Method and System, Computer Apparatus, and Non-transitory Storage Medium

Номер патента: US20230367381A1. Автор: Siheng LUO. Владелец: Suzhou Wave Intelligent Technology Co Ltd. Дата публикации: 2023-11-16.

Method and device for controlling a touch screen, terminal and storage medium

Номер патента: US20210247888A1. Автор: Cong Peng,Wenjun Gao. Владелец: Beijing Xiaomi Mobile Software Co Ltd. Дата публикации: 2021-08-12.

Method and device for adjusting display brightness, mobile terminal and storage medium

Номер патента: US11798516B2. Автор: Yongqiang JIA. Владелец: Beijing Xiaomi Mobile Software Co Ltd. Дата публикации: 2023-10-24.

Step counting method and device, electronic apparatus and readable storage medium

Номер патента: US20240159566A1. Автор: XUE Yang,Yanhua Tang. Владелец: Goertek Inc. Дата публикации: 2024-05-16.

Lidar controlling method and device, electronic apparatus and storage medium

Номер патента: US20230204771A1. Автор: Xi FENG,Changsheng GONG. Владелец: Suteng Innovation Technology Co Ltd. Дата публикации: 2023-06-29.

Lidar controlling method and device, electronic apparatus and storage medium

Номер патента: EP4202498A1. Автор: Xi FENG,Changsheng GONG. Владелец: Suteng Innovation Technology Co Ltd. Дата публикации: 2023-06-28.

LiDAR controlling method and device, electronic apparatus and storage medium

Номер патента: US11947012B2. Автор: Xi FENG,Changsheng GONG. Владелец: Suteng Innovation Technology Co Ltd. Дата публикации: 2024-04-02.

Lidar controlling method and device, electronic apparatus and storage medium

Номер патента: US20240201375A1. Автор: Xi FENG,Changsheng GONG. Владелец: Suteng Innovation Technology Co Ltd. Дата публикации: 2024-06-20.

Screen zoom-in processing method and apparatus based on mobile terminal, and terminal and medium

Номер патента: EP4435594A1. Автор: Hong Zhang. Владелец: Huizhou TCL Mobile Communication Co Ltd. Дата публикации: 2024-09-25.

Method and apparatus for transmitting wallets between mobile devices

Номер патента: US09940618B2. Автор: Bogyeong Kang. Владелец: SAMSUNG ELECTRONICS CO LTD. Дата публикации: 2018-04-10.

Method and system for host device event synchronization

Номер патента: US20050289252A1. Автор: Ihn Kim,Aurelio Cruz. Владелец: QLogic LLC. Дата публикации: 2005-12-29.

Page processing method and apparatus, storage medium, and terminal device

Номер патента: US12124525B2. Автор: Jianye Yang. Владелец: Huawei Technologies Co Ltd. Дата публикации: 2024-10-22.

Egg incubation method and apparatus

Номер патента: RU2129360C1. Автор: Дратт Райнер. Владелец: Дратт Райнер. Дата публикации: 1999-04-27.

Federated learning method and related apparatus

Номер патента: EP4414905A1. Автор: Zhe Liu,Chenghui Peng,Shuo WAN,Jiaxun LU. Владелец: Huawei Technologies Co Ltd. Дата публикации: 2024-08-14.

Display method and apparatus for display screen of terminal and terminal

Номер патента: CN105975045A. Автор: 魏伟. Владелец: GUANGDONG OPPO MOBILE TELECOMMUNICATIONS CORP LTD. Дата публикации: 2016-09-28.

Method and apparatus for processing messages by terminal, and terminal

Номер патента: CN106056010A. Автор: 陈宇,王刚,刘欢欢. Владелец: Beijing Xiaomi Mobile Software Co Ltd. Дата публикации: 2016-10-26.

Method and apparatus for marking virtual object, terminal, and storage medium

Номер патента: US20240346771A1. Автор: Huifei BAO. Владелец: Tencent Technology Shenzhen Co Ltd. Дата публикации: 2024-10-17.

Browser Page Display Method and Apparatus, Storage Medium and Terminal

Номер патента: US20200042568A1. Автор: ZENG Jiang. Владелец: . Дата публикации: 2020-02-06.

Image Processing Method And Apparatus, Storage Medium, And Terminal

Номер патента: US20210142450A1. Автор: FAN SHIQING. Владелец: Shanghai Harvest Intelligence Technology Co., Ltd.. Дата публикации: 2021-05-13.

OBJECT RECOMMENDATION METHOD AND APPARATUS, STORAGE MEDIUM AND TERMINAL DEVICE

Номер патента: US20210157860A1. Автор: Li Hang,Zhang Xiaoying. Владелец: . Дата публикации: 2021-05-27.

DATA DISPLAY METHOD AND APPARATUS, STORAGE MEDIUM, AND TERMINAL

Номер патента: US20190220176A1. Автор: Wang Dong,Chen Lei,ZENG LIANG,SHI Jinghui,Qian Jing,LI Xuechao,Kang Liang. Владелец: . Дата публикации: 2019-07-18.

CONVOLUTION ACCELERATION OPERATION METHOD AND APPARATUS, STORAGE MEDIUM AND TERMINAL DEVICE

Номер патента: US20220366213A1. Автор: Yi Liqiang. Владелец: . Дата публикации: 2022-11-17.

Gesture recognition-based test method and apparatus, storage medium and terminal device

Номер патента: WO2020147434A1. Автор: 余晓晓. Владелец: 深圳壹账通智能科技有限公司. Дата публикации: 2020-07-23.

Page processing method and apparatus, storage medium, and terminal device

Номер патента: US20220335094A1. Автор: Jianye Yang. Владелец: Huawei Technologies Co Ltd. Дата публикации: 2022-10-20.

Living body detection method and apparatus, storage medium, and terminal

Номер патента: WO2022156441A1. Автор: 李怀东,毛亚磊,游瑞蓉,侯严明. Владелец: 展讯通信(上海)有限公司. Дата публикации: 2022-07-28.

Boot method and apparatus for device and terminal device

Номер патента: WO2015074234A1. Автор: 朱雄伟,钟光华. Владелец: 华为终端有限公司. Дата публикации: 2015-05-28.

Graph drawing method and apparatus, storage medium, and terminal device

Номер патента: WO2022077827A1. Автор: 周文超. Владелец: 网易(杭州)网络有限公司. Дата публикации: 2022-04-21.

Convolution acceleration operation method and apparatus, storage medium and terminal device

Номер патента: WO2021088688A1. Автор: 易立强. Владелец: 深圳云天励飞技术股份有限公司. Дата публикации: 2021-05-14.

Gaze capturing method and apparatus, storage medium, and terminal

Номер патента: WO2022193809A1. Автор: 王志勇,张建杰,柴金祥,王从艺,金师豪. Владелец: 上海墨舞科技有限公司. Дата публикации: 2022-09-22.

Recommending method and apparatus, storage medium, and terminal device

Номер патента: EP3678067A4. Автор: Kai Sun,Dongfeng Wu. Владелец: Beijing Baidu Netcom Science And Technology Co Ltd. Дата публикации: 2021-04-28.

Method and and apparatus for measuring a physical parameter in mammal soft tissues by propagating shear waves

Номер патента: IL217726A0. Автор: . Владелец: Univ Paris Diderot Paris 7. Дата публикации: 2012-03-29.

Enabling method and enabling device for debugging port of terminal, and terminal

Номер патента: US20160085699A1. Автор: Peng Ninghua. Владелец: . Дата публикации: 2016-03-24.

TERMINAL CONTROL METHOD AND DEVICE, VOICE CONTROL DEVICE AND TERMINAL

Номер патента: US20170110131A1. Автор: JIANG Zhifeng. Владелец: ZTE CORPORATION. Дата публикации: 2017-04-20.

Application calling method and device of terminal equipment and terminal equipment

Номер патента: CN111209561A. Автор: 刘健. Владелец: Chengdu TD Tech Ltd. Дата публикации: 2020-05-29.

GRAPHICAL PROGRAMMING METHOD, SYSTEM AND APPARATUS, MEDIUM, PROCESSOR AND TERMINAL

Номер патента: US20220374210A1. Автор: LIU Luo Sha,PANG Xiao Yue,WANG Zi Jia,XIONG Ge. Владелец: Siemens Ltd., China. Дата публикации: 2022-11-24.

Method and device for capturing screen and terminal

Номер патента: US11886893B2. Автор: Chumou GUO. Владелец: Beijing Xiaomi Mobile Software Co Ltd. Дата публикации: 2024-01-30.

Ultrasound method and apparatus

Номер патента: US11857367B2. Автор: Alberto Gomez,Joseph Hajnal,Robert ECKERSLEY,Laura PERALTA PEREIRA. Владелец: KINGS COLLEGE LONDON. Дата публикации: 2024-01-02.

Code Hot-Update Method and Device, Storage Medium, Processor, and Terminal

Номер патента: US20210034356A1. Автор: Zhou Yang. Владелец: . Дата публикации: 2021-02-04.

Graphical bookmark realization method and device for embedded browser, and Terminal

Номер патента: US20150089378A1. Автор: PAN Lei. Владелец: ZTE CORPORATION. Дата публикации: 2015-03-26.

POSITIONING METHOD AND DEVICE, SERVER, STORAGE MEDIUM AND TERMINAL

Номер патента: US20220171011A1. Автор: HUANG Wentao. Владелец: YULONG COMPUTER TELECOMMUNICATION SCIENTIFIC (SHENZHEN) CO.,LTD. Дата публикации: 2022-06-02.

Visual tracking method and device, unmanned aerial vehicle and terminal device

Номер патента: US20180143637A1. Автор: TIAN YU,Jiang Wenyan. Владелец: . Дата публикации: 2018-05-24.

Convolution implementation method and device of neural network and terminal equipment

Номер патента: CN111178513B. Автор: 李炜,曹庆新. Владелец: Shenzhen Intellifusion Technologies Co Ltd. Дата публикации: 2022-04-15.

Calibration method and device of detection device and terminal equipment

Номер патента: CN109115258B. Автор: 丁伟,韩艳红,程威睿. Владелец: Maccura Medical Electronics Co Ltd. Дата публикации: 2020-10-23.

A kind of transmission method of daily record log information, device and terminal

Номер патента: CN106776385A. Автор: 张强. Владелец: GUANGDONG OPPO MOBILE TELECOMMUNICATIONS CORP LTD. Дата публикации: 2017-05-31.

Interactive method and system in virtual reality and terminal device

Номер патента: CN106527722A. Автор: 杨凯. Владелец: Netease Hangzhou Network Co Ltd. Дата публикации: 2017-03-22.

Data processing method and device, storage medium, processor and terminal

Номер патента: CN108509248A. Автор: 孔喜龙. Владелец: Netease Hangzhou Network Co Ltd. Дата публикации: 2018-09-07.

Menu display method and device, storage medium, processor and terminal

Номер патента: CN108519844B. Автор: 孔喜龙. Владелец: Netease Hangzhou Network Co Ltd. Дата публикации: 2020-06-16.

Switching processing method and device, computer storage medium and terminal

Номер патента: CN112181241A. Автор: 薛俊峰. Владелец: Zhuhai Kingsoft Office Software Co Ltd. Дата публикации: 2021-01-05.

Method and device for running game and terminal equipment

Номер патента: CN111111206A. Автор: 罗强. Владелец: Alibaba Group Holding Ltd. Дата публикации: 2020-05-08.

Method and system for secure delivery and printing of documents via a network device

Номер патента: US20030014651A1. Автор: Rojas John,James Norris,Kevin Strobel. Владелец: Pitney Bowes Inc. Дата публикации: 2003-01-16.

Touch compensation method and device for perforated screen and terminal

Номер патента: CN111966237A. Автор: 李岩. Владелец: TCL Communication Ningbo Ltd. Дата публикации: 2020-11-20.

Task allocation method and device, readable storage medium and terminal equipment

Номер патента: CN110766269A. Автор: 李亮,王培强. Владелец: Ping An Technology Shenzhen Co Ltd. Дата публикации: 2020-02-07.

Method and device for unlocking screen, and terminal

Номер патента: EP2955617A1. Автор: Tao Peng,Weixing Li,Chengxing Gao. Владелец: Xiaomi Inc. Дата публикации: 2015-12-16.

State detection method and device of proximity sensor and terminal

Номер патента: CN106776092B. Автор: 张强. Владелец: GUANGDONG OPPO MOBILE TELECOMMUNICATIONS CORP LTD. Дата публикации: 2020-06-02.

Display control method and device of OLED screen and terminal equipment

Номер патента: CN110858470A. Автор: 龚复生,史肖栋,孙甲庆. Владелец: Hisense Mobile Communications Technology Co Ltd. Дата публикации: 2020-03-03.

Method and device for image processing and terminal device

Номер патента: CN103413270A. Автор: 张波,周志农,唐明勇. Владелец: Beijing Xiaomi Technology Co Ltd. Дата публикации: 2013-11-27.

Information display method and device, storage medium, processor and terminal

Номер патента: CN108334273B. Автор: 陈贤. Владелец: Netease Hangzhou Network Co Ltd. Дата публикации: 2020-08-25.

Starting method and device for application program, and terminal

Номер патента: CN106681821A. Автор: 孙权. Владелец: Yulong Computer Telecommunication Scientific Shenzhen Co Ltd. Дата публикации: 2017-05-17.

menu display method and device, storage medium, processor and terminal

Номер патента: CN108519844A. Автор: 孔喜龙. Владелец: Netease Hangzhou Network Co Ltd. Дата публикации: 2018-09-11.

Program recommendation method and device, readable storage medium and terminal equipment

Номер патента: CN110704677A. Автор: 陆显松. Владелец: Excellent Network Co Ltd. Дата публикации: 2020-01-17.

Random number generation method and device for load balancing and terminal

Номер патента: CN110162293B. Автор: 李拓,宋大伟. Владелец: Shanghai Ziyi Network Technology Co ltd. Дата публикации: 2020-10-09.

Method and device for fingerprint recognition, and terminal device

Номер патента: WO2020168495A1. Автор: 王骐骥. Владелец: 深圳市汇顶科技股份有限公司. Дата публикации: 2020-08-27.

Program file generation method and device, storage medium, processor and terminal

Номер патента: CN107329756B. Автор: 冯帆,付翔. Владелец: Netease Hangzhou Network Co Ltd. Дата публикации: 2020-06-26.

Naming processing method and device, computer storage medium and terminal

Номер патента: CN111831613A. Автор: 朱健. Владелец: Guangzhou Kingsoft Mobile Technology Co Ltd. Дата публикации: 2020-10-27.

Game scene moving method and device, storage medium, processor and terminal

Номер патента: CN107335218B. Автор: 古祁琦. Владелец: Netease Hangzhou Network Co Ltd. Дата публикации: 2021-02-19.

Workpiece detection method and device, readable storage medium and terminal equipment

Номер патента: CN111815552A. Автор: 王瑞,吴振华. Владелец: TCL Research America Inc. Дата публикации: 2020-10-23.

Task allocation method and device, readable storage medium and terminal equipment

Номер патента: CN110764898B. Автор: 李亮,王培强. Владелец: Ping An Technology Shenzhen Co Ltd. Дата публикации: 2023-03-03.

Document editing method and device, computer storage medium and terminal

Номер патента: CN110929480A. Автор: 邓斌. Владелец: Guangzhou Kingsoft Mobile Technology Co Ltd. Дата публикации: 2020-03-27.

Patrol alarm method and device, readable storage medium and terminal equipment

Номер патента: CN112017323A. Автор: 熊友军,贾亮亮. Владелец: Ubtech Robotics Corp. Дата публикации: 2020-12-01.

Verification processing method and device, computer storage medium and terminal

Номер патента: CN109977400B. Автор: 王道广,于政. Владелец: Beijing Mininglamp Software System Co ltd. Дата публикации: 2022-11-11.

Gantt chart drawing method and device, computer storage medium and terminal

Номер патента: CN111126016A. Автор: 曹丽影. Владелец: Beijing Mininglamp Software System Co ltd. Дата публикации: 2020-05-08.

Method and system for displaying pictures and terminal

Номер патента: CN104408077A. Автор: 陈东海. Владелец: Yulong Computer Telecommunication Scientific Shenzhen Co Ltd. Дата публикации: 2015-03-11.

Identification card number detection method and device, readable storage medium and terminal

Номер патента: CN112686247A. Автор: 王丹丹,杨旭,王晓亮,魏东. Владелец: GRG Banking Equipment Co Ltd. Дата публикации: 2021-04-20.

Storage method and device of upgrade package, and terminal

Номер патента: CN106528249A. Автор: 李明浩. Владелец: Beijing Xiaomi Mobile Software Co Ltd. Дата публикации: 2017-03-22.

Terrain data processing method and device, storage medium, processor and terminal

Номер патента: CN110070609B. Автор: 叶永盛. Владелец: Netease Hangzhou Network Co Ltd. Дата публикации: 2023-06-20.

Sensor calibration method and device, computer storage medium and terminal

Номер патента: CN112964291A. Автор: 张晓龙,杨殿阁,杨蒙蒙,江昆,温拓朴,黄琪杰. Владелец: TSINGHUA UNIVERSITY. Дата публикации: 2021-06-15.

Networking method and device for air conditioner, and terminal

Номер патента: WO2019196464A1. Автор: 唐杰,叶铁英,赖东锋,杨都,鲁智高. Владелец: 珠海格力电器股份有限公司. Дата публикации: 2019-10-17.

Application control method and device, readable storage medium and terminal

Номер патента: CN108563932B. Автор: 张俊,张伟杰,谭春宏. Владелец: GUANGDONG OPPO MOBILE TELECOMMUNICATIONS CORP LTD. Дата публикации: 2020-01-10.

Data measurement method and device for electrocardiographic waveform and terminal equipment

Номер патента: CN110301914B. Автор: 饶力,沈东雪,于串海. Владелец: Edan Instruments Inc. Дата публикации: 2022-03-04.

Image processing method and device for binding nodes and terminal

Номер патента: CN110334751B. Автор: 黄强,张伟民,孙尧,梁震烁,郭子原. Владелец: Beijing Haribit Intelligent Technology Co ltd. Дата публикации: 2021-08-13.

Detection method and system of electric vehicle and terminal equipment

Номер патента: CN109165620B. Автор: 张茜,张晓飞,蔡阳,马信,李元梦. Владелец: Individual. Дата публикации: 2022-10-11.

Information processing method and device, computer storage medium and terminal

Номер патента: CN111414258A. Автор: 邓斌. Владелец: Guangzhou Kingsoft Mobile Technology Co Ltd. Дата публикации: 2020-07-14.

Method and device for unlocking screen, and terminal

Номер патента: EP2955617B1. Автор: Tao Peng,Weixing Li,Chengxing Gao. Владелец: Xiaomi Inc. Дата публикации: 2017-12-13.

Lie detecting method and lie detecting server thereby and terminal device having the same

Номер патента: KR101209831B1. Автор: 조용준,최현규. Владелец: 유비벨록스(주). Дата публикации: 2012-12-07.

Method and device for information processing, and terminal

Номер патента: WO2018107727A1. Автор: 朱钰,郝志坚. Владелец: 中兴通讯股份有限公司. Дата публикации: 2018-06-21.

Recommendation method and device for application program and terminal

Номер патента: CN104268248A. Автор: 肖超,杨海英,付建勋,熊佳林. Владелец: Beijing Kingsoft Internet Security Software Co Ltd. Дата публикации: 2015-01-07.

Method and device for screening pictures and terminal equipment

Номер патента: CN106250916B. Автор: 唐金伟. Владелец: XI'AN KUPAI SOFTWARE TECHNOLOGY Co Ltd. Дата публикации: 2020-02-21.

Networking method and device for air conditioner, and terminal

Номер патента: EP3764007B1. Автор: Du Yang,Dongfeng LAI,Jie Tang,Tieying YE,Zhigao LU. Владелец: Gree Electric Appliances Inc of Zhuhai. Дата публикации: 2023-11-22.

Image content extraction method and apparatus, terminal, and storage medium

Номер патента: US20240127404A1. Автор: HAO LI. Владелец: Guangdong Genius Technology Co Ltd. Дата публикации: 2024-04-18.

Traveling path boundary determination method and device, vehicle, storage medium, and terminal

Номер патента: EP4335710A4. Автор: XU Ran,Bin Wang,Rui Wang,Si Liu. Владелец: Momenta Suzhou Technology Co Ltd. Дата публикации: 2024-03-13.

Positioning method and positioning apparatus

Номер патента: EP4382864A1. Автор: Jie Chen,Yuan Cheng,Jinjing Wang,Peisheng WANG. Владелец: Huawei Technologies Co Ltd. Дата публикации: 2024-06-12.

Optical disc, tracking controlling apparatus and method, and focus controlling apparatus and method

Номер патента: US20030048706A1. Автор: Shoei Kobayashi. Владелец: Sony Corp. Дата публикации: 2003-03-13.

Image processing method and device, computer apparatus, and storage medium

Номер патента: EP3796222A1. Автор: Xing SUN,Xiaowei Guo,Xinyang JIANG,Ruixin ZHANG. Владелец: Tencent Technology Shenzhen Co Ltd. Дата публикации: 2021-03-24.

Application cloning-based interface display method and related apparatus

Номер патента: EP4451123A1. Автор: Ke Shi,Dezhi Huang. Владелец: Honor Device Co Ltd. Дата публикации: 2024-10-23.

SEARCH RECOMMENDING METHOD AND APPARATUS, APPARATUS AND COMPUTER STORAGE MEDIUM

Номер патента: US20180373721A1. Автор: LIU Junqi. Владелец: BAIDU ONLINE NETWORK TECHNOLOGY (BEIJING) CO., LTD.. Дата публикации: 2018-12-27.

Data Mosaic Construction Method and Apparatus (APPARATUS AND METHOD FOR CONTRUCTING A MOSAIC OF DATA)

Номер патента: KR970707509A. Автор: . Владелец: . Дата публикации: 1997-12-01.

Search recommending method and apparatus, apparatus and computer storage medium

Номер патента: US10936633B2. Автор: Junqi Liu. Владелец: Baidu Online Network Technology Beijing Co Ltd. Дата публикации: 2021-03-02.

Signal processing method and related apparatus

Номер патента: EP4390453A1. Автор: Zhizhen HUANG,Xianling SHI,Guoliang Cao,Jiaxue GONG,Shanjie CHEN. Владелец: Huawei Technologies Co Ltd. Дата публикации: 2024-06-26.

Information recording apparatus and method, and information reproduction apparatus and method

Номер патента: EP1199718A3. Автор: Mikio Yamamuro. Владелец: Toshiba Corp. Дата публикации: 2002-08-14.

Charging method and communication apparatus

Номер патента: EP4080471A1. Автор: LIANG Chen,Yanan Chen,Jizhong SUN. Владелец: Huawei Technologies Co Ltd. Дата публикации: 2022-10-26.

Audio encoding apparatus and method, and audio decoding apparatus and method

Номер патента: US20230238003A1. Автор: Woohyun NAM,Sunghee Hwang,Yoonjae SON,Hyunkwon CHUNG. Владелец: SAMSUNG ELECTRONICS CO LTD. Дата публикации: 2023-07-27.

Information recording apparatus and method, and information reproduction apparatus and method

Номер патента: US20020106083A1. Автор: Mikio Yamamuro. Владелец: Individual. Дата публикации: 2002-08-08.

Obstacle detection method and device, apparatus, and storage medium

Номер патента: EP3836017A2. Автор: Mao SHU. Владелец: Beijing Baidu Netcom Science And Technology Co Ltd. Дата публикации: 2021-06-16.

Method and device for gesture detection, mobile terminal and storage medium

Номер патента: EP3889637A1. Автор: Jinlong Li. Владелец: Beijing Xiaomi Mobile Software Co Ltd. Дата публикации: 2021-10-06.

Data processing and writing method and related apparatus

Номер патента: US09710504B2. Автор: Liang Ke,Jingting XIA,Jianjian HUANG. Владелец: Huawei Technologies Co Ltd. Дата публикации: 2017-07-18.

Improvements in building structures and in methods and and apparatus for constructing same

Номер патента: GB644890A. Автор: . Владелец: Individual. Дата публикации: 1950-10-18.

Image processing method and device, electronic apparatus and storage medium

Номер патента: US12039763B2. Автор: Qing Li,Qingsong XU. Владелец: Hangzhou Glority Software Ltd. Дата публикации: 2024-07-16.

Coordinate axis display method and apparatus applied to virtual environments, terminal, and medium

Номер патента: US20230321535A1. Автор: Jieqi XIE. Владелец: Tencent Technology Shenzhen Co Ltd. Дата публикации: 2023-10-12.

SEMANTIC SEGMENTATION METHOD AND APPARATUS FOR THREE-DIMENSIONAL IMAGE, TERMINAL, AND STORAGE MEDIUM

Номер патента: US20210049397A1. Автор: CHEN Sihong. Владелец: . Дата публикации: 2021-02-18.

METHOD AND APPARATUS FOR DISPLAYING VIRTUAL SCENE, TERMINAL, AND STORAGE MEDIUM

Номер патента: US20220274017A1. Автор: Yan Jiang,WEI Jiacheng,LU Qingchun. Владелец: . Дата публикации: 2022-09-01.

Method and apparatus for presenting images, mobile terminal and computer storage medium

Номер патента: US20150153907A1. Автор: Lin Zheng. Владелец: . Дата публикации: 2015-06-04.

METHOD AND APPARATUS FOR DISPLAYING SEARCH PAGE, TERMINAL AND STORAGE MEDIUM

Номер патента: US20210216604A1. Автор: Wang Xiao. Владелец: . Дата публикации: 2021-07-15.

Method and and apparatus for recycling livestock excretions using reverse osmosis

Номер патента: KR102029623B1. Автор: 이준행,박노섭,김귀봉. Владелец: 김귀봉. Дата публикации: 2019-10-08.

Control method and apparatus, movable platform, remote control terminal, and control system

Номер патента: WO2022082609A1. Автор: 梁季光. Владелец: 深圳市大疆创新科技有限公司. Дата публикации: 2022-04-28.

Method and apparatus for displaying virtual pet, terminal, and storage medium

Номер патента: WO2020043015A1. Автор: 彭威,贺星,张翊城,张延巍. Владелец: 腾讯科技(深圳)有限公司. Дата публикации: 2020-03-05.

Method and apparatus for displaying message box, terminal and storage medium

Номер патента: EP3848800B1. Автор: Lian Zhang. Владелец: ZTE Corp. Дата публикации: 2024-01-24.

Method and apparatus for displaying message box, terminal and storage medium

Номер патента: EP3848800A4. Автор: Lian Zhang. Владелец: ZTE Corp. Дата публикации: 2021-10-20.

Information transmission method and device, computer storage medium and terminal

Номер патента: CN109787919B. Автор: 李志安,史小菊. Владелец: Raisecom Technology Co Ltd. Дата публикации: 2023-04-07.

Method of and apparatus for scattered resisted yarns dyeing method and and apparatus for hand bundles

Номер патента: JPS5249386A. Автор: Masaji Hirai,Manzou Makita. Владелец: HIRAI SENSHIYOKU KK. Дата публикации: 1977-04-20.

Information transmission and reception methods and devices

Номер патента: JP6794389B2. Автор: ▲麗▼霞 薛,磊 官,▲強▼ 李. Владелец: Huawei Technologies Co Ltd. Дата публикации: 2020-12-02.

Method and device for processing time synchronization state, terminal and network side equipment

Номер патента: CN118945789A. Автор: 杨晓东,张艳霞. Владелец: Vivo Mobile Communication Co Ltd. Дата публикации: 2024-11-12.

Method and apparatus, storage medium and terminal device derived from database file

Номер патента: CN107644059A. Автор: 赵璐. Владелец: Guangzhou Shiyuan Electronics Thecnology Co Ltd. Дата публикации: 2018-01-30.

DATA TRANSMISSION METHOD IN A ZIGBEE NETWORK, TERMINAL PROCESSOR, AND TERMINAL DEVICE

Номер патента: US20120057587A1. Автор: Yang Hui,Xing Zhihao,Tang Houcheng. Владелец: . Дата публикации: 2012-03-08.

Visitor navigation method and system based on fire evacuation indication terminal and terminal

Номер патента: CN112668762A. Автор: 肖明禄. Владелец: Shenzhen Fsy Smart Fire Fighting Co ltd. Дата публикации: 2021-04-16.

Method and device of terminal control and terminal

Номер патента: CN103092341A. Автор: 朱琦,王占东,李自军,赖景愚,邹志科. Владелец: Huawei Technologies Co Ltd. Дата публикации: 2013-05-08.

Message transmission method and system based on XMPP and terminals

Номер патента: CN104539524A. Автор: 徐乐生. Владелец: ZTE ICT Technologies Co Ltd. Дата публикации: 2015-04-22.

Polishing method, polishing apparatus and GaN wafer

Номер патента: US20120001193A1. Автор: YAMAUCHI Kazuto,Sano Yasuhisa,MURATA Junji,YAGI Keita,Sadakuni Shun. Владелец: . Дата публикации: 2012-01-05.

Data transmission method, data reception method, data transmission device and terminal

Номер патента: CN105517045A. Автор: 李文生,马耀辉. Владелец: Coolpad Software Technology Shenzhen Co Ltd. Дата публикации: 2016-04-20.

Methods and Systems for Reducing Supply and Termination Noise

Номер патента: US20120182044A1. Автор: . Владелец: RAMBUS INC.. Дата публикации: 2012-07-19.

Signaling processing method and system, network side equipment and terminal

Номер патента: CN102143598B. Автор: 崔亚蕾. Владелец: Huawei Technologies Co Ltd. Дата публикации: 2014-06-25.

Transmission method of timing advance information, network equipment and terminal

Номер патента: CN109788546B. Автор: 吴昱民,鲁智,雷国华,岳然. Владелец: Vivo Mobile Communication Co Ltd. Дата публикации: 2021-07-06.

Data synchronization method and system, immediate data node and terminal data node

Номер патента: CN102143194A. Автор: 张普朝. Владелец: Huawei Technologies Co Ltd. Дата публикации: 2011-08-03.

Method and device for displaying content and terminal device

Номер патента: CN103677269A. Автор: 王娜,周天阳,詹松龄. Владелец: Xiaomi Inc. Дата публикации: 2014-03-26.

Control method and device of default browser and terminal

Номер патента: CN104881291A. Автор: 杨振辉. Владелец: Beijing Kingsoft Internet Security Software Co Ltd. Дата публикации: 2015-09-02.

Braking energy recovery method and system of electric vehicle and terminal equipment

Номер патента: CN109910626B. Автор: 吴明,吴一滔. Владелец: Shenzhen Mengma Electric Technology Co ltd. Дата публикации: 2020-12-18.

Comment editing method and device, computer storage medium and terminal

Номер патента: CN110929486A. Автор: 邓斌. Владелец: Guangzhou Kingsoft Mobile Technology Co Ltd. Дата публикации: 2020-03-27.

Call information input method and device based on DTMF and terminal

Номер патента: CN106878530B. Автор: 沙勇. Владелец: Beijing Anyun Century Technology Co Ltd. Дата публикации: 2020-01-10.

Method and device for incremental upgrading and terminal device

Номер патента: CN104216736A. Автор: 茹忆,杨小合,陈凯浩. Владелец: Xiaomi Inc. Дата публикации: 2014-12-17.

Method and system for processing icon and terminal

Номер патента: CN104750361A. Автор: 王旭. Владелец: XI'AN KUPAI SOFTWARE TECHNOLOGY Co Ltd. Дата публикации: 2015-07-01.

Document editing method and device, computer storage medium and terminal

Номер патента: CN111104777A. Автор: 邓斌. Владелец: Guangzhou Kingsoft Mobile Technology Co Ltd. Дата публикации: 2020-05-05.

Text editing method and device, computer storage medium and terminal

Номер патента: CN111581921A. Автор: 邓斌. Владелец: Guangzhou Kingsoft Mobile Technology Co Ltd. Дата публикации: 2020-08-25.

Synchronous method and device, the storage medium and terminal of code management system

Номер патента: CN109725927A. Автор: 杨文新. Владелец: Ping An Life Insurance Company of China Ltd. Дата публикации: 2019-05-07.

Document editing method and device, computer storage medium and terminal

Номер патента: CN110929472A. Автор: 邓斌. Владелец: Guangzhou Kingsoft Mobile Technology Co Ltd. Дата публикации: 2020-03-27.

Common case courseware making method and device for teaching system and terminal

Номер патента: CN111507076B. Автор: 赵俊博,连莲. Владелец: Beijing Xintang Sichuang Educational Technology Co Ltd. Дата публикации: 2022-07-05.

Access control method and device for application program and terminal

Номер патента: CN106155676B. Автор: 蒋鹏. Владелец: Tencent Technology Shenzhen Co Ltd. Дата публикации: 2020-04-03.

Method and system for browsing pictures and terminal device

Номер патента: CN103197841A. Автор: 张楚航. Владелец: Shenzhen ZTE Mobile Telecom Co Ltd. Дата публикации: 2013-07-10.

Technical ability releasing control method and device, storage medium, processor and terminal

Номер патента: CN107596688A. Автор: 古祁琦. Владелец: Netease Hangzhou Network Co Ltd. Дата публикации: 2018-01-19.

Method and device for function starting and terminal

Номер патента: CN103761123A. Автор: 林俊坚,李凯浩. Владелец: Guangzhou Huaduo Network Technology Co Ltd. Дата публикации: 2014-04-30.

Method and device for pruning forwarding path of multicast data and network equipment

Номер патента: CN101764756A. Автор: 杨敬民. Владелец: Fujian Star Net Communication Co Ltd. Дата публикации: 2010-06-30.

Method and system for determining forwarding paths of service flow and network management system

Номер патента: CN104219144A. Автор: 苏俊,孙昌盛,宋小琳. Владелец: Huawei Technologies Co Ltd. Дата публикации: 2014-12-17.

APPARATUS AND METHOD FOR INDUCTIVELY POWERING AND NETWORKING A RAIL OF A FIREARM

Номер патента: US20120192476A1. Автор: Compton David Walter,Crocker Gary Edward. Владелец: . Дата публикации: 2012-08-02.