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Небесная энциклопедия

Космические корабли и станции, автоматические КА и методы их проектирования, бортовые комплексы управления, системы и средства жизнеобеспечения, особенности технологии производства ракетно-космических систем

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Мониторинг СМИ

Мониторинг СМИ и социальных сетей. Сканирование интернета, новостных сайтов, специализированных контентных площадок на базе мессенджеров. Гибкие настройки фильтров и первоначальных источников.

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Поддерживает ввод нескольких поисковых фраз (по одной на строку). При поиске обеспечивает поддержку морфологии русского и английского языка
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20-09-2014 дата публикации

Система двигателя

Номер: RU0000145314U1

1. Система двигателя, содержащая:двигатель, содержащий впуск и выпуск;турбонагнетатель для подачи подвергнутого наддуву заряда воздуха в двигатель, причем турбонагнетатель включает в себя турбину с приводом от выхлопных газов и впускной компрессор;регулятор давления наддува, присоединенный в параллель турбине;непрерывно регулируемый клапан рециркуляции, присоединенный в параллель компрессору;дроссель, присоединенный к впуску ниже по потоку от компрессора; иконтроллер с машиночитаемыми командами для:осуществления работы системы двигателя в первом режиме, в котором положение регулятора давления наддува, впускного дросселя и положение клапана рециркуляции регулируются для обеспечения требуемого давления наддува на основании требования крутящего момента водителя; иосуществления работы системы двигателя во втором режиме, в котором регулируется только положение регулятора давления наддува и впускного дросселя для обеспечения требуемого давления наддува на основании требования крутящего момента водителя.2. Система по п. 1, в которой контроллер выполнен с возможностью осуществления работы системы двигателя в первом режиме в ответ на отсутствие указания ухудшения работы клапана рециркуляции и осуществления работы системы двигателя во втором режиме в ответ на указание ухудшения работы клапана рециркуляции.3. Система по п. 1, в которой при работе системы двигателя в первом режиме положение регулятора давления наддува регулируется с более высокой регулировкой коэффициента передачи, а при работе системы двигателя во втором режиме положение регулятора давления наддува регулируется с более низкой регул� РОССИЙСКАЯ ФЕДЕРАЦИЯ (19) RU (11) (13) 145 314 U1 (51) МПК F02B 37/16 (2006.01) F02D 23/00 (2006.01) ФЕДЕРАЛЬНАЯ СЛУЖБА ПО ИНТЕЛЛЕКТУАЛЬНОЙ СОБСТВЕННОСТИ (12) ТИТУЛЬНЫЙ (21)(22) Заявка: ЛИСТ ОПИСАНИЯ ПОЛЕЗНОЙ МОДЕЛИ К ПАТЕНТУ 2014109740/06, 13.03.2014 (24) Дата начала отсчета срока действия патента: 13.03.2014 (72) Автор(ы): ЯНКОВИЧ Мрдьян Я. (US), БАКЛЕНД Джулия Хелен (US) 14.03. ...

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10-06-2015 дата публикации

Система двигателя

Номер: RU0000152593U1

1. Система двигателя, содержащая:устройство сжатия, содержащее компрессор, расположенный во впускном канале;первый дроссель, расположенный ниже по потоку от компрессора во впускном канале;второй дроссель, расположенный выше по потоку от компрессора во впускном канале;контроллер, содержащий процессор и машиночитаемое запоминающее устройство, содержащее команды, исполняемые процессором, дляоткрывания второго дросселя для повышения давления на впуске первого дросселя при переходном состоянии, когда требуемое давление во впускном коллекторе больше, чем давление на впуске дросселя у первого дросселя, если падение давления на втором дросселе больше, чем пороговое значение давления.2. Система двигателя по п. 1, дополнительно содержащая:систему регулируемой установки фаз клапанного распределения;при этом машиночитаемое запоминающее устройство дополнительно содержит команды, исполняемые процессором для:регулировки системы регулируемой установки фаз клапанного распределения для уменьшения внутреннего захватывания EGR в цилиндрах двигателя при переходном состоянии, когда требуемое абсолютное давление во впускном коллекторе больше, чем давление на впуске дросселя, если коэффициент наполнения цилиндров меньше, чем пороговое значение коэффициента наполнения.3. Система двигателя по п. 1, дополнительно содержащая:систему LP-EGR для подачи LP-EGR из выпускного канала во впускной канал выше по потоку от компрессора;при этом машиночитаемое запоминающее устройство дополнительно содержит команды, исполняемые процессором для:уменьшения потока LP-EGR при переходном состоянии, когда требуемое абсолютное давление во впуск� РОССИЙСКАЯ ФЕДЕРАЦИЯ (19) RU (11) (13) 152 593 U1 (51) МПК F02D 23/00 (2006.01) F02D 43/00 (2006.01) ФЕДЕРАЛЬНАЯ СЛУЖБА ПО ИНТЕЛЛЕКТУАЛЬНОЙ СОБСТВЕННОСТИ (12) ТИТУЛЬНЫЙ (21)(22) Заявка: ЛИСТ ОПИСАНИЯ ПОЛЕЗНОЙ МОДЕЛИ К ПАТЕНТУ 2014120400/06, 20.05.2014 (24) Дата начала отсчета срока действия патента: 20.05.2014 Приоритет(ы): (30) Конвенционный приоритет: (45) Опубликовано: ...

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19-01-2012 дата публикации

Method and device for determining the pressure upstream from the turbine of a supercharging turbocharger of a thermal engine

Номер: US20120016602A1
Принадлежит: RENAULT SAS

A method for determining, in a turbocharger for supercharging a thermal engine including a turbine and a compressor, the pressure upstream from the turbine based on the inlet air flow, the pressure upstream from the compressor, the temperature upstream from the compressor, the pressure downstream from the compressor, the temperature upstream from the turbine, and the pressure downstream from the turbine.

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03-05-2012 дата публикации

Egr controller for internal combustion engine

Номер: US20120109493A1
Автор: Hiroyuki TAKEZOE
Принадлежит: Denso Corp

By means of an air model, an estimated quantity of an exhaust gas flowing into a cylinder and a target quantity of the exhaust gas are computed. A deviation between the estimated quantity and the target quantity is multiplied by a feedback gain to obtain a feedback correction quantity. A reference opening degree of an EGR valve is defined according to an engine driving condition and the feedback correction quantity is added to the reference opening degree to obtain a command opening degree of the EGR valve. According to the engine driving condition and the deviation between the estimated quantity and the target quantity, a feedback gain is established so that control accuracy and control stability of a feedback control can be ensured.

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10-05-2012 дата публикации

Deterioration determination apparatus for airflow meter and deterioration determination method

Номер: US20120111100A1
Принадлежит: Denso Corp

When a deterioration determination apparatus determines a degree of deterioration in characteristics of an airflow meter, a driving condition of an engine is maintained at a specified condition in which intake air flow rate is greater than a specified value. A measurement error of the airflow meter is computed based on an intake air flow rate measured with the airflow meter. The degree of deterioration due to stain is determined based on the measurement error.

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12-07-2012 дата публикации

Control device for turbocharged engine

Номер: US20120179356A1
Принадлежит: Mitsubishi Heavy Industries Ltd

An object of the present invention is to provide a control device for a turbocharged engine capable of accurately estimating the revolution speed of a turbine without using additional components for directly detecting the turbine revolution speed, and by accurately estimating the turbine revolution speed, capable of accurately keeping the turbine revolution speed at an allowed value or below and preventing excessive rotation. The control device for a turbocharged engine includes a turbocharger having a compressor disposed in an intake passage of an engine, and a turbine disposed in an exhaust passage of the engine, a fuel injection amount control unit for controlling a fuel injection amount to the engine according to an operating state of the engine, and a turbine revolution speed estimation unit for determining by calculations an estimated value of a revolution speed of the turbine from the operating state of the engine. When the estimated value of the turbine revolution speed exceeds a predetermined allowed value, the fuel injection control unit controls the fuel injection amount such that the estimated value of the turbine revolution speed becomes equal to or less than the allowed value.

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02-08-2012 дата публикации

System for diagnosing error conditions of a gas flow control system for diesel engines

Номер: US20120197550A1
Принадлежит: GM GLOBAL TECHNOLOGY OPERATIONS LLC

A combustion engine evaluation unit is provided that includes, but is not limited to a microcontroller receiving measurement signals from a gas flow control system and outputting a state signal of the gas flow control system. The microcontroller includes, but is not limited to input ports for receiving as first set of measurement signals. Furthermore, the microcontroller includes, but not limited to input ports for receiving as a second set of measurement signals. The microcontroller is configured to calculate a first set of predicted values with a gas flow model based on the first set of measurement signals and calculate a second set of predicted values with a nominal model based on the second set of measurement signals. The microcontroller is also configured to generate the state signal based on a comparison of the first set of predicted values with the second set of predicted values.

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16-08-2012 дата публикации

Method for controlling the operation of a compressor

Номер: US20120204560A1
Автор: Jon Dixon
Принадлежит: FORD GLOBAL TECHNOLOGIES LLC

A method for controlling a compressor of a turbocharger is disclosed. In one example, the method comprises varying a maximum permitted compressor outlet temperature based upon a function of compressor outlet temperature and operating time, and controlling the operation of the compressor so that the maximum permitted compressor outlet temperature is not exceeded. In this way a higher boost pressure can safely be used during the early life of the compressor but excessive coking of the compressor with a resultant loss of efficiency later in the life of the compressor is reduced.

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23-08-2012 дата публикации

Method for operating a turbocharger arrangement and control unit for a turbocharger arrangement

Номер: US20120210710A1
Принадлежит: FORD GLOBAL TECHNOLOGIES LLC

A method for operating a turbocharger arrangement of an internal combustion engine, the turbocharger arrangement comprising a low-pressure and a high-pressure turbocharging stage arranged sequentially, the low-pressure turbo-charging stage comprising a low-pressure turbine with a sensorless low-pressure turbine bypass valve, is provided. The method comprises evaluating at least one sensor signal of the turbocharger arrangement for detecting a failure mode of the sensorless low-pressure turbine bypass valve. In this way, the low-pressure turbine bypass valve may be monitored for degradation without utilizing a position sensor.

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04-10-2012 дата публикации

System and method for cam phaser control in an engine

Номер: US20120247411A1
Принадлежит: GM GLOBAL TECHNOLOGY OPERATIONS LLC

A control system for an engine includes a position determination module and a position control module. The position determination module determines a first cam phaser position for starting the engine prior to engine shut down, and determines a second cam phaser position for starting the engine while the engine is shut down. The position control module adjusts a cam phaser to the first cam phaser position at engine shut down. The position control module adjusts the cam phaser from the first cam phaser position to the second cam phaser at engine start up when a difference between the first cam phaser position and the second cam phaser position is greater than a predetermined difference. A method for controlling an engine is also provided.

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18-10-2012 дата публикации

System and method for calibration and fault detection of non-contact position sensor

Номер: US20120265420A1
Принадлежит: GM GLOBAL TECHNOLOGY OPERATIONS LLC

A control system for an engine includes a control module and a resistor. The resistor is connected in series between the control module and a non-contact position sensor. The control module selectively detects a fault of the non-contact position sensor based on a voltage drop across the resistor. A method for controlling an engine includes providing a resistor connected in series between a control module and a non-contact position sensor, and selectively detecting a fault of the non-contact position sensor based on a voltage drop across the resistor.

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15-11-2012 дата публикации

Internal Combustion Engine Control Device

Номер: US20120290193A1
Принадлежит: HITACHI LTD

An internal combustion engine control device is provided which can accurately estimate intake pipe temperature behavior during transient time even in an internal combustion engine embedded with a variable valve or a turbocharger. The internal combustion engine control device estimates transient behavior of the intake pipe temperature, on the basis of a flow rate (dGafs/dt) of gas flowing into the intake pipe, a flow rate (dGcyl/dt) of gas flowing from the intake pipe, an intake pipe pressure Pin, and a temporal changing rate (dPin/dt) of the intake pipe pressure. The device performs knocking control during transient time, on the basis of the estimated transient behavior of the intake pipe temperature.

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24-01-2013 дата публикации

System and method to estimate intake charge temperature for internal combustion engines

Номер: US20130024085A1
Принадлежит: GM GLOBAL TECHNOLOGY OPERATIONS LLC

An engine includes an intake manifold mixing an intake air flow and an exhaust gas recirculation flow to provide an intake charge flow. A method to estimate an intake charge temperature of the intake charge includes monitoring system conditions for the engine, determining an effect of the mixing upon a specific heat coefficient of the intake charge flow based upon the monitored system conditions, estimating the intake charge temperature based upon the effect of the mixing upon the specific heat coefficient of the intake charge flow and the monitored system conditions, and controlling the engine based upon the estimated intake charge temperature.

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14-03-2013 дата публикации

Method and system for adjusting port throttles

Номер: US20130066540A1
Принадлежит: FORD GLOBAL TECHNOLOGIES LLC

An engine system and method for improving engine starting are disclosed. In one example, two engine cylinder port throttles are adjusted differently during engine starting. The system and method may improve engine torque control during an engine start.

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04-04-2013 дата публикации

NOx EMISSION ESTIMATION METHOD AND ARRANGEMENT

Номер: US20130085733A1
Принадлежит: Volvo Car Corp

A NO x emission estimation method and arrangement for a diesel engine for estimating the amount of NO x generated in a combustion chamber of the diesel engine. The method comprises the steps of: providing values for speed and load by measuring the engine speed and the fuel injection amount; providing a base NO x value from an engine speed-load resolved reference NO x map; defining and providing emission influencing input parameters by measuring corresponding signal values; calculating a deviation between at least one emission influencing input parameter and a speed-load resolved reference value for the at least one emission influencing input parameter; multiplying the calculated deviation with an individual value from an individual speed-load resolved weight map for the at least one emission influencing input parameter, thereby creating an emission influencing input parameter related correction for the at least one emission influencing input parameter; adding and summarizing the at least one emission influencing input parameter related correction to the base NO x value and thereby obtaining an estimated NO x mass flow value.

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30-05-2013 дата публикации

Control device for internal combustion engine

Номер: US20130138324A1
Автор: Taku Ibuki
Принадлежит: Toyota Motor Corp

The present invention relates to a control device for an internal combustion engine including: a first control subject 52 and a second control subject 35 D respectively capable of directly controlling a first control amount Regr and a second control amount Pim interacting with each other; a means for setting a target value of the first control amount as a first target control amount and setting a target value of the second control amount as a second target control amount; and a means for controlling the first control amount at the first target control amount and controlling the second control amount at the second target control amount. Further, in the present invention, a first target control amount TRegr is set as the target value of the first control amount capable of controlling the first control amount with a predetermined followability taking account of at least one of a first operation speed Krie, Krde as the operation speed of the first control subject and a degree of influence Ksee of the first control subject on the first control amount and at least one of a second operation speed Kriv, Krdv as the operation speed of the second control subject and a degree of influence Ksev of the second control subject on the first control amount.

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22-08-2013 дата публикации

Position detecting device

Номер: US20130214767A1
Принадлежит: Denso Corp

A position detecting device has an output circuit, which controls voltages of signal lines connecting a power supply and a ground by a power side transistor and a ground side transistor. An output signal line connects a connection point of the signal lines and an output terminal. A first comparator circuit outputs a signal “1” when a current flowing in the line between the power supply and the connection point is larger than a normal current flowing into the ground from the power supply in a normal state. A second comparator circuit outputs a signal “1” when a current flowing in the line between the connection point and the ground is larger than the normal current. When the signal “1” is output from the first comparator circuit or the second comparator circuit, a cutoff circuit turns off a switch disposed in the output signal line.

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17-10-2013 дата публикации

Sensor device for detecting a flow property of a fluid medium

Номер: US20130269419A1
Принадлежит: ROBERT BOSCH GMBH

A sensor device for detecting at least one flow property of a fluid medium. The sensor device includes at least one sensor housing, in which at least one electronic module having at least one flow sensor for detecting the flow property is accommodated. The electronic module is at least partially accommodated in at least one electronic space. Furthermore, at least one pressure sensor and at least one humidity sensor are accommodated inside the sensor housing. The pressure sensor and also the humidity sensor are at least partially accommodated in at least one sensor space, which is designed separately from the electronic space.

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31-10-2013 дата публикации

System and method for controlling an internal combustion engine for a motor vehicle in transit

Номер: US20130289852A1
Принадлежит: RENAULT SAS

A system for controlling a diesel internal combustion engine including a circuit for partially recirculating exhaust gases, including a mechanism estimating set values of intake-air parameters; a mechanism estimating richness of the exhaust gas; a mechanism determining a set value of the intake richness according to set values of the intake-air parameters; and a mechanism correcting at least one of the set values of the intake-air parameters according to the estimation of the richness of the exhaust gas and the richness set value.

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07-11-2013 дата публикации

Driver-assisted fuel reduction strategy and associated apparatus, system, and method

Номер: US20130297185A1
Автор: Andrew A. Morris
Принадлежит: Individual

According to one embodiment, an apparatus for controlling fuel consumption in an internal combustion engine of a vehicle having a driver-actuated accelerator pedal includes an economy mode activation module and a standard fueling module. The economy mode activation module is configured to compare throttle input data with defined limits. The throttle input data is controllable by a driver of the vehicle via positioning of the accelerator pedal. The economy mode activation module is configured to control the fuel consumption of the internal combustion engine via an economy fuel map if the throttle input data falls within the defined limits for a defined amount of time. The standard fueling mode activation module is configured to control the fuel consumption of the internal combustion engine via a standard fuel map if the throttle input data does not fall within the defined limits for the defined amount of time.

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14-11-2013 дата публикации

Control device for internal combustion engine with supercharger

Номер: US20130304355A1
Автор: Kiyonori Takahashi
Принадлежит: Toyota Motor Corp

An object of the present invention is to prevent hunting of a throttle in a region in which a throttle upstream pressure and a throttle downstream pressure become substantially equal to each other in an internal combustion engine with a supercharger. For this purpose, a control device for an internal combustion engine with a supercharger provided by the present invention processes a signal of a throttle opening which is calculated by using a formula of throttling when a ratio of the throttle upstream pressure and the throttle downstream pressure has a value close to 1, and controls an operation of the throttle with the throttle opening the change speed of which is lessened as a target throttle opening.

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14-11-2013 дата публикации

System and method for preventing misfire during engine startup

Номер: US20130304362A1
Принадлежит: GM GLOBAL TECHNOLOGY OPERATIONS LLC

A system according to the principles of the present disclosure includes a stop-start module and a throttle control module. The stop-start module stops an engine when a driver depresses a brake pedal while an ignition system is on and the engine is idling. The throttle control module selectively opens a throttle valve when fuel injection in the engine is stopped while the ignition system is on based on engine speed and a manifold pressure within an intake manifold. The stop-start module starts the engine when the driver releases the brake pedal.

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02-01-2014 дата публикации

Air supply device of gas engine

Номер: US20140000255A1
Принадлежит: Mitsubishi Heavy Industries Ltd

An air supply device of a gas engine having a turbocharger includes a first intake passage configured to guide the mixture of outdoor air and unpurified gas into the turbocharger, a second intake passage configured to guide indoor air into the turbocharger, a filter configured to remove a solid impurity in the unpurified gas which is disposed in the first intake passage, a first damper capable of opening and closing the first intake passage disposed on the downstream side of the filter in the first intake passage, a heating unit for heating the indoor air disposed in the second intake passage, a second damper capable of opening and closing the second intake passage disposed on the downstream side of the heating unit in the second intake passage, and a damper control device configured to control the opening degree of each of the first and second dampers.

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09-01-2014 дата публикации

Engine system

Номер: US20140007839A1
Автор: Hiroshi Inoue
Принадлежит: Yamaha Motor Co Ltd

An engine system includes an engine, an air intake passage to supply air to the engine, a throttle valve provided in the air intake passage to adjust a throttle opening degree that is an opening degree of the air intake passage, a bypass passage to supply air to the engine while bypassing the throttle valve, an on/off valve provided in the bypass passage to open and close the bypass passage, and a control unit that performs ignition lag control of the engine to control an output of the engine when the on/off valve is in an open state.

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06-01-2022 дата публикации

METHOD AND SYSTEM FOR DIAGNOSING MISFIRE OF ENGINE

Номер: US20220003182A1
Принадлежит:

A system for diagnosing a misfire of an engine includes a sensing unit including at least one sensor for detecting at least one detection value associated with an operation of the engine, and an electronic control unit configured to determine whether a misfire of the engine due to exhaust valve leakage has occurred based on the detection values from the sensing unit, and perform an operation corresponding to the misfire due to exhaust valve leakage when the misfire due to exhaust valve leakage has occurred, wherein the electronic control unit a misfire code for exhaust valve leakage in a memory when the misfire due to exhaust valve leakage has occurred. 1. A system for diagnosing a misfire of an engine , comprising:a sensing unit including at least one sensor for detecting at least one detection value associated with an operation of the engine; andan electronic control unit configured to determine whether a misfire of the engine due to exhaust valve leakage has occurred based on the detection values from the sensing unit, and perform an operation corresponding to the misfire due to exhaust valve leakage when the misfire due to exhaust valve leakage has occurred,wherein the electronic control unit stores a misfire code for exhaust valve leakage in a memory when the misfire due to exhaust valve leakage has occurred.2. The system of claim 1 , wherein the electronic control unit is configured to:detect an output torque drop of the engine;control the engine by an optimal air/fuel ratio when the output torque drop of the engine is detected;count an output torque drop of the engine while controlling the engine by the optimal air/fuel ratio; anddetermine whether the misfire due to exhaust valve leakage has occurred when the output torque drop count is above a predetermined number.3. The system of claim 2 , wherein the misfire code for exhaust valve leakage comprises information on a misfire occurrence driving point where the misfire due to exhaust valve leakage has occurred ...

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04-01-2018 дата публикации

Charge-flow adjustment in closed-loop exhaust temperature control on dual fuel engines

Номер: US20180003118A1
Принадлежит: Cummins Inc

Methods and systems of controlling operation of a dual fuel engine are provided, comprising determining a target exhaust temperature, sensing an actual exhaust temperature, determining an exhaust temperature deviation by comparing the actual exhaust temperature to the target exhaust temperature, comparing the exhaust temperature deviation to a threshold, adjusting at least one of an intake throttle, a wastegate, a compressor bypass valve, an exhaust throttle, a VGT and engine valve timing when the exhaust temperature deviation exceeds the threshold to control charge-flow to the engine, and continuing the adjusting until the exhaust temperature deviation is less than the threshold.

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02-01-2020 дата публикации

INTERNALLY COOLED HIGH COMPRESSION LEAN-BURNING INTERNAL COMBUSTION ENGINE

Номер: US20200003112A1
Автор: Mulye Nirmal
Принадлежит: NOSTRUM ENERGY PTE, LTD.

An internally cooled internal combustion piston engine and method of operating a piston engine is provided, with the combination of liquid water injection, higher compression ratios than conventional engines, and leaner air fuel mixtures than conventional engines. The effective compression ratio of the engines herein is greater than 13:1. The engines may employ gasoline or natural gas and use spark ignition, or the engines may employ a diesel-type fuel and use compression ignition. The liquid water injection provides internal cooling, reducing or eliminating the heat rejection to the radiator, reduces engine knock, and reduces NOx emissions. The method of engine operation using internal cooling with liquid water injection, high compression ratio and lean air fuel mixture allow for more complete and efficient combustion and therefore better thermal efficiency as compared to conventional engines. 125-. (canceled) This application is a continuation application of co-pending U.S. patent application Ser. No. 14/949,523 filed Nov. 23, 2015, which is a continuation application of U.S. patent application Ser. No. 14/598,935 filed Jan. 16, 2015, now U.S. Pat. No. 9,194,339 issued Nov. 24, 2015, which is a continuation application of U.S. patent application Ser. No. 13/444,533 filed Apr. 11, 2012, now U.S. Pat. No. 8,935,996 issued Jan. 20, 2015, which has been filed as U.S. Reissue patent application Ser. No. 15/410,356 filed Jan. 19, 2017, which application claims priority under 35 U.S.C. § 119(e) of U.S. Provisional Patent Application No. 61/474,240, filed Apr. 11, 2011, the disclosure of which is hereby incorporated by reference in its entirety.The present disclosure pertains to the field of internal combustion engines, including engines for motor vehicles, railways, ships, aircraft, or electrical power generation.This disclosure pertains to internal combustion engines that operate far more efficiently than conventional engines. The principles set forth herein can be used ...

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02-01-2020 дата публикации

Method for diagnosing leakage of fuel vapor purge system

Номер: US20200003164A1
Автор: Choo Saeng CHOI
Принадлежит: Hyundai Motor Co, Kia Motors Corp

A method for diagnosing leakage of a fuel vapor dual purge system is provided. The method includes determining whether an operation region of a vehicle is an operation region in which a turbocharger is operated and adjusting a flow amount of intake air flowing into the turbocharger according to an operation region in which the turbocharger is operated. A hydrocarbon collecting amount of a canister connecting fuel vapor generated in the fuel tank is calculated and a flow amount of the fuel vapor passing first and second purge lines is adjusted. A leak of the fuel vapor is diagnosed in the first purge line and the second purge line.

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07-01-2021 дата публикации

DYNAMIC CONTROL OF AN AIR HANDLING SYSTEM FOR VEHICLE ACCELERATION PERFORMANCE

Номер: US20210003083A1
Автор: BELLINGER Steven M.
Принадлежит:

System, apparatus, and methods are disclosed for improving vehicle acceleration performance. One or more devices of the internal combustion engine system are controlled in response to a torque transition event indicator and/or one or more vehicle acceleration event indicators indicating a vehicle acceleration event is imminent to improve vehicle response during acceleration.

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07-01-2021 дата публикации

OPTIMIZED FUEL MANAGEMENT SYSTEM FOR DIRECT INJECTION ETHANOL ENHANCEMENT OF GASOLINE ENGINES

Номер: US20210003084A1
Принадлежит:

Fuel management system for enhanced operation of a spark ignition gasoline engine. Injectors inject an anti-knock agent such as ethanol directly into a cylinder. It is preferred that the direct injection occur after the inlet valve is closed. It is also preferred that stoichiometric operation with a three way catalyst be used to minimize emissions. In addition, it is also preferred that the anti-knock agents have a heat of vaporization per unit of combustion energy that is at least three times that of gasoline. 121-. (canceled)22. A fuel management system for a spark ignition engine , comprising:a first fueling system that uses direct injection;a second fueling system that uses port fuel injection; anda three-way catalyst configured to reduce emissions from the spark ignition engine,wherein the fuel management system is configured to provide fueling in a first torque range, the first torque range being a first range of torque values at which both the first fueling system and the second fueling system are operable throughout the first range of torque values,wherein the fuel management system is further configured such that a fraction of fueling provided by the first fueling system is higher at a highest value of torque in the first torque range than in a lowest value of torque in the first torque range,wherein the fuel management system is further configured to provide fueling in a second torque range, the second torque range being a second range of torque values at which the second fueling system is operable throughout the second range of torque values and the first fueling system is not operable throughout the second range of torque values,wherein the fuel management system is further configured such that when the system provides fueling at a torque value that exceeds the second range of torque values, the spark ignition engine is operated in the first torque range,wherein the fuel management system is further configured to increase the fraction of fueling provided ...

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07-01-2021 дата публикации

Engine system

Номер: US20210003086A1
Автор: Gaku Ito
Принадлежит: Subaru Corp

An engine system includes an intake pipe, an exhaust pipe, an exhaust gas recirculation (EGR) pipe, an injection amount deriver, and a fuel injector. The intake pipe is configured to direct intake air into a combustion chamber of an engine. The exhaust pipe is configured to receive exhaust gas discharged from the combustion chamber. The EGR pipe is coupled to the exhaust pipe and the intake pipe and configured to recirculate the exhaust gas into the intake pipe as EGR gas. The injection amount deriver is configured to derive a target injection amount of fuel using a mass of air contained in the EGR gas or a mass of fuel contained in the EGR gas and using a preset target air excess coefficient. The fuel injector is configured to inject an amount of fuel corresponding to the target injection amount derived by the injection amount deriver into the combustion chamber.

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03-01-2019 дата публикации

ENGINE WITH EXHAUST TURBOCHARGER

Номер: US20190003375A1
Автор: Furukawa Yuta

An engine with an exhaust turbocharger includes: an exhaust bypass passage connected to an exhaust passage and bypassing a turbine of the exhaust turbocharger; a waste gate valve configured to open and close the exhaust bypass passage; a throttle valve disposed in an intake passage; a first pressure sensor and a second pressure sensor disposed upstream and downstream of the throttle valve in the intake passage; and a valve open-close control unit configured to calculate a pressure difference on the basis of pressure values detected by the first pressure sensor and the second pressure sensor, close the waste gate valve if the pressure difference is smaller than a threshold which is set in advance, and open the waste gate valve if the pressure difference is greater than the threshold. 14-. (canceled)5. An engine with an exhaust turbocharger , comprising:an exhaust bypass passage connected from an inlet of the exhaust turbocharger in an exhaust passage to an outlet of the exhaust turbocharger, bypassing a turbine of the exhaust turbocharger;a waste gate valve configured to regulate an engine output by opening and closing the exhaust bypass passage;a throttle valve disposed in an intake passage between the exhaust turbocharger and the engine and configured to control an intake amount to the engine; anda valve open-close control unit configured to calculate a pressure difference across the throttle valve, close the waste gate valve if the calculated pressure difference is smaller than a threshold which is set in advance, and open the waste gate valve if the calculated pressure difference is greater than the threshold,wherein the threshold is set to be constant in a region where an engine load is high, and is set to be a threshold greater than the constant threshold in a region where the engine load is low.6. The engine with an exhaust turbocharger according to claim 5 ,wherein the valve open-close control unit is configured to control an opening degree of the waste gate ...

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03-01-2019 дата публикации

Engine control device

Номер: US20190003408A1
Автор: Hiroki Oshima, Koji Hata
Принадлежит: Mitsubishi Motors Corp

An engine includes a dynamo-electric machine which generates electricity by the rotation of the engine; a secondary battery which stores electricity generated by the dynamo-electric machine; an electric supercharger including an electric compressor for supercharging intake air into combustion chambers; and a mechanical supercharger including an exhaust turbine configured to be driven by exhaust gas in the exhaust passage, and a mechanical compressor configured to supercharge intake air into the combustion chamber. An ECU (50) includes a remaining charge detector for detecting the remaining amount of charge of the secondary battery; and a supercharge control means for adjusting the ratio between a supercharging pressure by the electric supercharger and a supercharging pressure by the mechanical supercharger according to the remaining amount of charge of the secondary battery.

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12-01-2017 дата публикации

Evap system with valve to improve canister purging

Номер: US20170009673A1
Автор: Aed M. Dudar
Принадлежит: FORD GLOBAL TECHNOLOGIES LLC

Systems and methods are provided for an evaporative emissions control system. In one example, a system for an engine may comprise a fuel vapor canister, a mixing valve positioned in a fresh air line upstream of the vapor canister, and an actuator physically coupled to the mixing valve for adjusting a position of the mixing valve to increase turbulence in air entering the vapor canister. The position of the mixing valve may be adjusted to increase an amount of turbulence in air entering the fuel vapor canister.

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11-01-2018 дата публикации

ASSEMBLY AND METHOD FOR SAFE STARTING OF AN INTERNAL COMBUSTION ENGINE

Номер: US20180010531A1
Принадлежит:

An internal combustion engine for driving a working assembly with a clutch, including a combustion chamber into which a mixture of fuel and air is supplied, a spark plug to ignite the mixture, ignition of the mixture driving a piston operably coupled to a crank portion of the engine, a fuel supply system including a fuel valve and a throttle valve, a throttle position sensor configured to determine a position of the throttle valve, a speed sensor configured to determine engine speed, and an electronic control unit configured to control operation of the fuel valve and the spark plug, the electronic control unit being configured to initiate a speed limitation operation in response to a first position of the throttle valve at engine start-up, wherein the speed limitation operation continues until the throttle valve is moved from its first position. 1. An internal combustion engine arranged to be used with a power tool and for driving a working assembly of said power tool , said working assembly having a clutch , said engine comprising:a combustion chamber into which a mixture of fuel and air is supplied;a spark plug disposed proximate to the combustion chamber to ignite the mixture by generating a spark, ignition of the mixture driving a piston operably coupled to a crank portion of the engine;a fuel supply system including a fuel valve and the throttle valve, the fuel valve being arranged to control fuel provision into the mixture and the throttle valve being adjustable to control the provision of air into the mixture;a throttle position sensor configured to determine a position of the throttle valve within a full range of operation of the throttle valve;a speed sensor configured to determine engine speed; anda controller configured to control the operation of the fuel valve and the spark plug, the controller being configured toreceive an indication of the engine speed from the speed sensor and to determine whether the engine speed exceeds a threshold value, and, if ...

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14-01-2021 дата публикации

Control device for internal combustion engine

Номер: US20210010434A1
Принадлежит: Toyota Motor Corp

A control device for the internal combustion engine is provided with a carbon dioxide concentration control part configured to cause a concentration of carbon dioxide in exhaust flowing into the filter to decrease when the temperature of the filter becomes a predetermined first temperature setting or more and less than a predetermined second temperature setting. The first temperature setting is made a temperature selected from a temperature band at which ash deposited on the filter can be made to be separate from the filter when the inside of the filter is in an atmosphere where the concentration of carbon dioxide is lower than when it is in an exhaust atmosphere. The second temperature setting is made a temperature set so as to prevent excessive temperature rise of the catalyst device.

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14-01-2021 дата публикации

ON-BOARD DIAGNOSTICS OF A TURBOCHARGER SYSTEM

Номер: US20210010438A1
Принадлежит: VOLVO TRUCK CORPORATION

A turbocharger system () of a combustion engine () comprises a turbocharger turbine () operable by exhaust gases, a valve () configured to control gas flow of pressurized gas from a pressurized gas reservoir () to the turbocharger turbine (), and a sensor (). Turbocharger system operation comprises injecting a test pulse of pressurized gas from the pressurized gas reservoir () to drive the turbocharger turbine () by means of controlling the valve (), detecting an impact of injected pressurized gas on the turbocharger turbine () by means of the sensor (), collecting data from the sensor (), and diagnosing the turbocharger system () by evaluating an operational response of the turbocharger turbine () as a result of the injected test pulse of pressurized gas, based on the collected data. 2. A method according to claim 1 , characterized by that the step of evaluating the operational response of the turbocharger turbine comprises the further step ofcomparing the data collected after the test pulse has been injected to data collected before the test pulse is injected.3. (canceled)5. A method according to claim 4 , characterized by the further steps of when a current delay time has been determined claim 4 ,injecting a control pulse of pressurized gas from the pressurized gas reservoir to drive the turbocharger turbine, wherein the control pulse is longer than the current delay time,detecting impact of injected pressurized gas on the turbocharger turbine by means of the sensor,collecting data from the sensor, andevaluating if the operational response as a result of the injected control pulse indicates that the turbocharger system operates as expected.6. A method according to claim 4 , characterized by the further step ofstoring current delay time as a stored system delay time, whereby stored system delay time is used to optimize operation of the turbocharger system.7. A method according to claim 6 , characterized by the further step ofcorrelating and storing the stored ...

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10-01-2019 дата публикации

VEHICLE TURBOCHARGER SYSTEMS AND METHODS WITH IMPROVED AFTERTREATMENT ACTIVATION

Номер: US20190010881A1
Принадлежит: GM GLOBAL TECHNOLOGY OPERATIONS LLC

A turbocharger system for an engine of a vehicle includes a variable geometry turbine configured to receive exhaust gas from the engine. The variable geometry turbine includes adjustable vanes and a vane actuator to adjust the adjustable vanes between at least an open position and a closed position. The turbocharger further includes an intake duct configured to receive intake air; a first compressor rotationally coupled to the variable geometry turbine and fluidly coupled to the intake duct to compress at least a first portion of the intake air; an electric compressor fluidly coupled to the intake duct to selectively compress at least a second portion of the intake air; and a manifold conduit fluidly coupled to the first compressor and the electric compressor and configured to receive and direct the first and second portions of the intake air to a manifold of the engine. 1. A turbocharger system for an engine of a vehicle , comprising:a variable geometry turbine configured to receive exhaust gas from the engine, the variable geometry turbine including adjustable vanes and a vane actuator to adjust the adjustable vanes between at least an open position and a closed position;an intake duct configured to receive intake air;a first compressor rotationally coupled to the variable geometry turbine and fluidly coupled to the intake duct to compress at least a first portion of the intake air;an electric compressor fluidly coupled to the intake duct to selectively compress at least a second portion of the intake air; anda manifold conduit fluidly coupled to the first compressor and the electric compressor and configured to receive and direct the first and second portions of the intake air to a manifold of the engine.2. The turbocharger system of claim 1 , further comprising an electronic control unit configured to control operation of at least the vane actuator and the electric compressor.3. The turbocharger system of claim 2 , wherein the electronic control unit includes a ...

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10-01-2019 дата публикации

SENSOR ARRANGEMENT OF INTERNAL COMBUSTION ENGINE

Номер: US20190010900A1
Принадлежит:

A sensor arrangement of an internal combustion engine includes an intake duct including one or more curved parts bent or curved and connecting an intercooler and a throttle; and a pressure sensor provided on the intake duct and configured to detect a pressure in the intake duct. The pressure sensor includes a detector disposed close to an outside curved portion of a curved part. 1. A sensor arrangement of an internal combustion engine comprising:an intake duct including one or more curved parts bent or curved and connecting an intercooler and a throttle; anda pressure sensor provided on the intake duct and configured to detect a pressure in the intake duct,wherein the pressure sensor includes a detector disposed close to an outside curved portion of a curved part.2. The sensor arrangement according to claim 1 ,wherein the curved part at the lowermost downstream position of the intake duct has an outside curved portion and an inside curved portion,wherein the curved part has an imaginary straight line connecting the vertex of the outside curved portion and the vertex of the inside curved portion,wherein the curved part has an imaginary perpendicular bisector of the imaginary straight line, andwherein the pressure sensor includes an detector disposed closer to the outside curved portion than the imaginary perpendicular bisector.3. The sensor arrangement according to claim 2 ,wherein one curved portion of the outside curved portion and the inside curved portion has a constant curvature,wherein said one curved portion has a starting point and an ending point of a curve, andwherein the center point of the starting point and the ending point is set to a reference point of the imaginary straight line.4. The sensor arrangement according to claim 1 ,wherein the detector is provided outside of an outside wall line of a downstream end of the intake duct connected to the throttle.5. The sensor arrangement according to claim 2 ,wherein the detector is provided outside of an ...

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03-02-2022 дата публикации

A METHOD FOR CONTROLLING AN INTERNAL COMBUSTION ENGINE, A COMPUTER PROGRAM, A COMPUTER READABLE MEDIUM, A CONTROL UNIT, AN INTERNAL COMBUSTION ENGINE, AND A VEHICLE

Номер: US20220034270A1
Принадлежит: VOLVO TRUCK CORPORATION

The invention relates to a method to control an internal combustion engine. The internal combustion engine comprises a cylinder, an exhaust guide arranged to guide an exhaust flow from the cylinder through a turbine, and a bypass guide arranged to bypass a bypass flow from the cylinder past the turbine. The method comprises the step to determine a value of at least one engine operation parameter. The method is characterized by the step to determine a target value of an exhaust performance parameter depending on the determined engine operation parameter value. Further, the method comprises, depending on the determined target exhaust performance parameter value, the step to control the exhaust flow through the exhaust guide and the step to control the bypass flow through the bypass guide. 2. A method according to claim 1 , comprising:determining a current exhaust performance parameter value, andcontrolling the exhaust flow through the exhaust guide depending on a deviation of the determined current exhaust performance parameter value from the determined target exhaust performance parameter value; and/orcontrolling the bypass flow through the bypass guide depending on a deviation of the determined current exhaust performance parameter value from the determined target exhaust performance parameter value.3. A method according to comprising:determining an engine speed value and/or determining an engine load value, anddetermining the target exhaust performance parameter value depending on the determined engine speed value and/or the determined engine load value.4. A method according to comprising:determining a coolant temperature value and/or determining an ambient temperature value and/or determining an exhaust temperature value, andchoosing a value map for determining the target exhaust performance parameter value depending on the determined coolant temperature value and/or the determined ambient temperature value and/or the determined exhaust temperature value, and/ ...

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03-02-2022 дата публикации

SYSTEM AND METHOD FOR OPERATING AN ENGINE IN A FUEL CUT-OUT MODE

Номер: US20220034271A1
Принадлежит:

Methods and systems for operating an engine that includes adjustable poppet valve timing and an exhaust gas recirculation valve are described. In one example, the exhaust gas recirculation valve is opened and the timing of the poppet valves is retarded so that an amount of fresh air that is pumped by the engine to an after treatment device may be reduced. 1. An engine operating method , comprising:adjusting intake valve closing timing and closing an exhaust gas recirculation valve of an engine via a controller in response to an engine exiting a fuel cut-out mode.2. The engine method of claim 1 , further comprising adjusting a throttle of the engine in response to exiting the fuel cut-out mode claim 1 , the throttle adjusted to meet a driver demand torque.3. The engine method of claim 1 , where adjusting intake valve closing timing includes advancing intake valve closing timing.4. The engine method of claim 1 , further comprising activating one or more cylinders via injecting fuel to the one or more cylinders in response to the an engine exiting the fuel cut-out mode.5. The engine method of claim 1 , where the exhaust gas recirculation valve is included in a high pressure exhaust gas recirculation system.6. The engine method of claim 1 , where the exhaust gas recirculation valve is included in a low pressure exhaust gas recirculation system.7. The engine method of claim 1 , where the engine exits the fuel cut-out mode in response to a position of a pedal.8. The engine method of claim 1 , where the exhaust gas recirculation valve is partially closed.9. An engine system claim 1 , comprising:an engine including a high pressure exhaust gas recirculation (EGR) valve and poppet valves; anda controller including executable instructions stored in non-transitory memory that cause the controller to close the high pressure EGR valve and adjust timing of the poppet valves in response a pedal being applied while the engine is rotating without being fueled following an engine stop ...

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03-02-2022 дата публикации

OPTIMIZED FUEL MANAGEMENT SYSTEM FOR DIRECT INJECTION ETHANOL ENHANCEMENT OF GASOLINE ENGINES

Номер: US20220034272A1
Принадлежит:

Fuel management system for enhanced operation of a spark ignition gasoline engine. Injectors inject an anti-knock agent such as ethanol directly into a cylinder. It is preferred that the direct injection occur after the inlet valve is closed. It is also preferred that stoichiometric operation with a three way catalyst be used to minimize emissions. In addition, it is also preferred that the anti-knock agents have a heat of vaporization per unit of combustion energy that is at least three times that of gasoline. 1. A fuel management system for spark ignition engine where the fuel management system controls fueling from a first fueling system that directly injects fuel into at least one cylinder as a liquid and increases knock suppression by evaporative cooling and from a second fueling system that injects fuel into a region outside of the cylinder;and where there is a range of torque where both fueling systems are used at the same value of manifold pressure;and where a fraction of fuel in the cylinder that is introduced by the first fueling system increases with increasing manifold pressure so as to prevent knock by providing increased knock resistance;and where the fuel management system controls the change in the fraction of fuel introduced by the first fueling system using closed loop control that utilizes a sensor that detects knock and where open loop control is also used;and where the open loop control uses an engine map lookup table;and where open loop control is used during transients.2. The fuel management system of where the maximum knock suppression that is employed is provided by a combination of fueling from the first and second fueling systems.3. The fuel management system of or where use of the second fueling system in addition to the first fueling system is employed to obtain combustion stability.4. The fuel management system of where fuel from the first fueling system is introduced when the engine torque is above a selected value.5. The fuel ...

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18-01-2018 дата публикации

FAILURE DIAGNOSIS APPARATUS FOR VARIABLE COMPRESSION RATIO MECHANISM

Номер: US20180016995A1
Принадлежит:

A failure diagnosis apparatus according to the present disclosure is applied to a variable compression ratio mechanism that can switch the compression ratio of an internal combustion engine between at least a first compression ratio and a second compression ratio lower than the first compression ratio. When the variable compression ratio mechanism is controlled so as to set the compression ratio of the internal combustion engine to the second compression ratio, the failure diagnosis apparatus advances the ignition timing of one cylinder to a knock inducing ignition timing more advanced than the MBT that does not lead to the occurrence of knock if the actual compression ratio of that cylinder is the second compression ratio but leads to the occurrence of knock if the actual compression ratio of that cylinder is the first compression ratio and diagnoses failure of the variable compression ratio mechanism on the basis of whether knock occurs or not. 1. A failure diagnosis apparatus for a variable compression ratio mechanism for use in a spark-ignition internal combustion engine provided with a variable compression ratio mechanism capable of switching the compression ratio of the internal combustion engine having a plurality of cylinders between at least a first compression ratio and a second compression ratio lower than the first compression ratio and including a compression ratio changing mechanism provided in each of the cylinders of the internal combustion engine , a knock sensor attached to the internal combustion engine , and an ignition plug attached to each of the cylinders of the internal combustion engine ,the failure diagnosis apparatus comprising:a controller comprising at least one processor configured to:perform advancing process for diagnosis to advance the ignition timing of one cylinder of the internal combustion engine to a knock inducing ignition timing more advanced than the MBT that does not lead to the occurrence of knock if the actual compression ...

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18-01-2018 дата публикации

METHOD OF DETECTING ENGINE TUNING OF VEHICLE

Номер: US20180017006A1
Автор: KIM Pan Sang
Принадлежит: HYUNDAI MOTOR COMPANY

A method of detecting illegal tuning of the vehicle may include obtaining and storing, by a controller, at least one of learning information including a variable value and a control value and engine state information at a time of controlling the vehicle while the vehicle is driven, as a learning value; comparing, by the controller, a learning value, which is newly obtained over time, with a prestored previous learning value; determining, by the controller, that a tuning chip for changing component performance in the vehicle is mounted when the learning value is changed and there remains a difference between the obtained learning value and the prestored previous learning value at a predetermined level or higher for a predetermined period of time; and creating and storing, by the controller, a tuning detection code when it is determined that the tuning chip is mounted. 1. A method of detecting tuning of a vehicle , the method comprising:obtaining and storing, by a controller, at least one of learning information including a variable value and a control value and engine state information at a time of controlling the vehicle while the vehicle is driven, as a learning value;comparing, by the controller, a learning value, which is newly obtained over time, with a prestored previous learning value;determining, by the controller, that a tuning chip for changing component performance in the vehicle is mounted when the learning value is changed and there remains a difference between the obtained learning value and the prestored previous learning value at a predetermined level or higher for a predetermined period of time; andcreating and storing, by the controller, a tuning detection code when it is determined that the tuning chip is mounted.2. The method of claim 1 , wherein the variable value and the control value are a variable value and a control value at a time of controlling a turbocharger and an engine in a turbocharged vehicle claim 1 , and the tuning chip for changing ...

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17-01-2019 дата публикации

METHOD OF CLEANING A CHARGE AIR COOLER AND AN INTERNAL COMBUSTION ENGINE

Номер: US20190017431A1
Принадлежит: WÄRTSILÄ FINLAND OY

The present disclosure relates to a turbocharged internal combustion engine which will flush dirt periodically from the heat exchange surfaces of the LT-charge air cooler by using water condensed on the heat exchange surfaces for the flushing. 114.-. (canceled)15. A method of cleaning a charge air cooler of a turbocharged internal combustion engine , the engine having:a cylinder block with at least one cylinder;at least one cylinder head;an exhaust manifold arranged in connection with the at least one cylinder head;a charge air receiver arranged in connection with the at least one cylinder head;at least one turbocharger with a turbine connected to the exhaust gas manifold and a compressor connected to the charge air receiver;a high temperature (HT-) charge air cooler and a low temperature (LT-) charge air cooler arranged between the compressor and the charge air receiver, the charge air coolers having heat exchange surfaces;the LT-charge air cooler being a part of an LT-cooling liquid circuit having, in addition to the LT-charge air cooler, at least a central cooler and a circulating pump;a control unit for controlling the temperature of the charge air in relation to its dew point, the control unit receiving information on the temperature, pressure and humidity of the charge air; anda first three-way valve provided in the LT-cooling liquid circuit downstream of the LT-charge air cooler, the first three-way valve being configured for receiving commands from the control unit to control flow of cooling liquid from the circulating pump to the central cooler either directly or via the LT-charge air cooler, sending periodically commands to the three-way valve to throttle direct communication from the circulating pump to the central cooler by forcing such an amount of cooling liquid to flow from the central cooler via the circulating pump to the LT-charge air cooler to reduce temperature of heat exchange surfaces of the LT-charge air cooler below the dew point of the ...

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22-01-2015 дата публикации

Stop control apparatus for internal combustion engine

Номер: US20150020773A1
Автор: Yuta Tsukada
Принадлежит: Toyota Motor Corp

A stop control apparatus ( 100 ) for an internal combustion engine performs stop control of a three-or-less cylinder internal combustion engine ( 200 ). The stop control apparatus for the internal combustion engine is provided with: a determining device ( 161 ) configured to determine a compression stroke immediately before the internal combustion engine stops; and a throttle valve controlling device ( 168 ) configured to control an opening degree of a throttle valve ( 208 ) to be a predetermined opening degree while an intake valve ( 211 ) is closed in all cylinders, in the compression stroke immediately before the internal combustion engine stops, which is determined by the determining device. This reduces an influence of an intake negative pressure in an intake stroke, and makes it possible to preferably control the crank angle when the engine stops, even in the three-or-less cylinder internal combustion engine.

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21-01-2021 дата публикации

SYSTEM AND METHOD FOR AVOIDING COMPRESSOR SURGE DURING CYLINDER DEACTIVATION OF A DIESEL ENGINE

Номер: US20210017922A1
Принадлежит:

A system and method for improving the functioning of a turbocharged diesel engine equipped with a cylinder deactivation system includes detecting when the turbocharged diesel engine is at risk of compressor surge, and then delaying the implementation of the cylinder deactivation. The delay may be a set period of time, or it may be determined by performing a set of instructions effective for estimating changes in intake manifold pressures over time if cylinders are deactivated, and then comparing the intake manifold pressure estimates to acceptable intake manifold pressure information. A formula for performing the required estimates is provided. 1. A method for improving the functioning of a turbocharged diesel engine equipped with a cylinder deactivation system , the method comprising detecting when the turbocharged diesel engine is at risk of compressor surge , and then delaying part or all of the cylinder deactivation until risk of compressor surge is not indicated.2. A method according to wherein said detecting is accomplished by calculating estimates of changes in intake manifold pressure for specific CDA conditions claim 1 , and then comparing those estimates to the compressor surge line for the engine to determine whether deactivation of one or more cylinders will avoid compressor surge.3. A method according to wherein the method further includes moving into cylinder deactivation as quickly as possible while avoiding compressor surge.5. A method according to wherein the engine cylinder deactivation occurs as a series of individual cylinder deactivations until an appropriate number of engine cylinders have been deactivated.6. A method according to wherein the method comprises:detecting when the turbocharged diesel engine is at risk of compressor surge by calculating a first set of estimates of changes in intake manifold pressures over time;comparing the first set of estimates to information regarding the compressor surge conditions of the engine to determine ...

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16-01-2020 дата публикации

VEHICLE CONTROLLER

Номер: US20200018248A1
Автор: Anzawa Takumi
Принадлежит: TOYOTA JIDOSHA KABUSHIKI KAISHA

A vehicle controller includes a controlling section configured to control a torque applying mechanism. The controlling section is configured to execute a negative torque control by using the torque applying mechanism when execution conditions are satisfied. The execution conditions include a condition that an increase amount per predetermined time of the boost pressure has become greater than a preset boost pressure determination value. The negative torque control is a control to set the rotational torque applied to the crankshaft by the torque applying mechanism to a negative value that is on the negative side of a value immediately before the start of the negative torque control. 1. A vehicle controller configured to control a vehicle , wherein an internal combustion engine including a forced-induction device,', 'a boost pressure sensor that detects, as a boost pressure, a pressure in a section of an intake passage of the internal combustion engine on a downstream side of the forced-induction device, and', 'a torque applying mechanism that applies a rotational to a crankshaft of the internal combustion engine,, 'the vehicle includes'}the controller comprising a controlling section configured to control the torque applying mechanism,the controlling section is configured to execute a negative torque control by using the torque applying mechanism when execution conditions are satisfied, the execution conditions including a condition that an increase amount per predetermined time of the boost pressure has become greater than a preset boost pressure determination value, andthe negative torque control is a control to set the rotational torque applied to the crankshaft by the torque applying mechanism to a negative value that is on a negative side of a value immediately before start of the negative torque control.2. The vehicle controller according to claim 1 , wherein the execution conditions include a condition that an increase amount per predetermined time of an ...

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16-01-2020 дата публикации

ENGINE CONTROLLER AND ENGINE CONTROL METHOD

Номер: US20200018253A1
Принадлежит: TOYOTA JIDOSHA KABUSHIKI KAISHA

A first intake air amount an engine is calculated based on a detected value of an intake air flow rate of an air flowmeter. A second intake air amount is calculated based on any one of a detected value of an intake pipe pressure and a throttle opening degree instead of the detected value of the intake air flow rate. When it is determined that the intake pulsation is not large, a difference amount of the second intake air amount from the first intake air amount is calculated. A corrected second intake air amount, which is a sum of the second intake air amount and the difference amount, is set as an intake air amount calculated value when it is determined that the intake pulsation is large. 1. An engine controller configured to execute:a first intake air amount calculation process for calculating a first intake air amount, which serves as a calculated value of an intake air amount of an engine, based on a detected value of an intake air flow rate of an air flowmeter;a second intake air amount calculation process for calculating a second intake air amount, which serves as a calculated value of an intake air amount of the engine, based on any one of a detected value of an intake pipe pressure and a throttle opening degree instead of the detected value of the intake air flow rate;a determination process for determining whether intake pulsation in an intake passage of the engine is large;a difference amount calculation process for, when determining in the determination process that the intake pulsation is not large, calculating a difference amount of the second intake air amount from the first intake air amount; setting the first intake air amount as an intake air amount calculated value of the engine when determining in the determination process that the intake pulsation is not large, and', 'setting a corrected second intake air amount, which is a sum of the second intake air amount and the difference amount, as the intake air amount calculated value when determining in ...

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28-01-2016 дата публикации

Optimization-based controls for diesel engine air-handling systems

Номер: US20160025020A1
Принадлежит: Cummins Inc

System, apparatus, and methods are disclosed for a computing a first set of parameters based on operational states of an internal combustion engine and an air handling system, a second set of parameters based on a linear time varying model, and one or more control commands based upon a minimization or maximization of a cost function over a prediction horizon, the second set of parameters, and at least one physical constraint of the internal combustion engine, and controlling one or more operations based at least in part upon the one or more control commands. The acts of determining the first and second set of parameters and computing the one or more control commands are repeated over a plurality of time periods over which the first set of parameters and the second set of parameters are time variant.

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25-01-2018 дата публикации

FUEL SUPPLY CONTROL SYSTEM FOR V-TYPE TWO-CYLINDER GENERAL PURPOSE ENGINE

Номер: US20180023492A1
Принадлежит:

A fuel supply control system for a V-type two-cylinder general purpose engine according to the present disclosure, in a V-type two-cylinder general purpose engine including one fuel injection valve in a throttle body disposed upstream via an intake manifold connected to a cylinder head of each cylinder, changes an injection frequency or an operation timing of the fuel injection valve in accordance with an engine operation state detected by a detection unit. 1. A fuel supply control system for a V-type two-cylinder general purpose engine , comprising a fuel injection valve in a throttle body disposed upstream via an intake manifold connected to a cylinder head of each cylinder ,wherein, in the fuel supply control system, an injection frequency or an operation timing of the fuel injection valve is changed in accordance with an engine operation state detected by a detection unit.2. The fuel supply control system for a V-type two-cylinder general purpose engine according to claim 1 ,wherein the detection unit to detect the engine operation state includes an intake pressure sensor, an engine rotation sensor, an engine temperature sensor, and an oxygen sensor.3. The fuel supply control system for a V-type two-cylinder general purpose engine according to claim 1 ,wherein in a case where an injection frequency of the fuel injection valve is once or twice, and a shift criteria is shifted from once to twice, an OR condition is applied, andin a case where the injection frequency of the fuel injection valve is shifted from twice to once, an AND condition is applied.4. The fuel supply control system for a V-type two-cylinder general purpose engine according to claim 1 ,wherein in a case where an injection frequency of the fuel injection valve is twice, an injection is performed from an exhaust stroke to an intake stroke of each cylinder, andin a case where an injection frequency of the fuel injection valve is once, the injection starts in the middle of the intake stroke of each ...

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24-01-2019 дата публикации

CONTROL DEVICE FOR AN INTERNAL COMBUSTION ENGINE

Номер: US20190024575A1
Принадлежит: Mitsubishi Electric Corporation

In a control device for an internal combustion engine, when a target pre/post compressor pressure ratio calculated by a target pre/post compressor pressure ratio calculation part is more than a turbine-limit-time pre/post compressor pressure ratio calculated by a turbine-limit-time pre/post compressor pressure ratio calculation part, an upper limit of the target pre/post compressor pressure ratio is limited by the turbine-limit-time pre/post compressor pressure ratio, and a change rate of the target pre/post compressor pressure ratio is limited by a change rate limit value during a change rate limitation period after upper limit limitation processing starts, thereby preventing the target pre/post compressor pressure ratio from being suddenly fluctuated by a sudden fluctuation in a compressor passage flow rate, and suppressing the occurrence of the over rotation of the turbine and the control hunting. 1. A control device for an internal combustion engine , which is configured to control an internal combustion engine provided for a vehicle , a throttle valve, which is provided in an intake passage of the internal combustion engine;', 'an air flow sensor, which is configured to detect an intake air flow rate in the intake passage of the internal combustion engine;', 'a turbocharger, which includes a turbine provided in an exhaust passage of the internal combustion engine, and a compressor provided in the intake passage of the internal combustion engine and configured to rotate integrally with the turbine;', 'an exhaust bypass passage, which is configured to allow an upstream side and a downstream side of the turbine to communicate to each other;', 'a wastegate valve, which is provided in the exhaust bypass passage, and is configured to adjust a flow rate of exhaust gas of the internal combustion engine, which flows through the exhaust bypass passage;', 'an actuator, which is configured to drive the wastegate valve to change an open position of the wastegate valve; and ...

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24-01-2019 дата публикации

SYSTEMS AND METHODS FOR DIAGNOSING A VEHICLE ENGINE INTAKE MANIFOLD AND EXHAUST SYSTEM

Номер: US20190024599A1
Автор: Dudar Aed M.
Принадлежит:

Methods and systems are provided for indicating a presence or absence of a source of degradation stemming from one of an intake manifold, exhaust system, or engine of an engine system. In one example, a method comprises rotating the engine unfueled and indicating the source of degradation based on both an intake air flow and an exhaust flow, as compared to baseline intake air flow and baseline exhaust flow. In this way, a source of degradation may be pinpointed, which may increase a lifetime of a vehicle engine system, reduce undesired emissions, and which may increase customer satisfaction resulting from shorter time spent on diagnosing such a source of degradation. 1. A method comprising:conducting an engine system diagnostic by rotating an engine of a vehicle unfueled to draw an intake air flow into the engine via an intake manifold and to route an exhaust flow via an exhaust system to atmosphere; andindicating a source of degradation stemming from one of the engine, the intake manifold, or the exhaust system based on both the intake air flow and the exhaust flow during the rotating.2. The method of claim 1 , further comprising:prior to conducting the engine system diagnostic, obtaining a set of baseline comparator data that includes a baseline intake air flow and a baseline exhaust flow under a substantially equivalent set of conditions as that for conducting the engine system diagnostic, including rotating the engine unfueled via a motor powered via a battery.3. The method of claim 2 , wherein the substantially equivalent set of conditions further comprises rotating the engine at a predetermined speed for a predetermined duration of time claim 2 , and controlling a throttle positioned in the intake manifold to a predetermined position to allow air to be drawn into the engine via the intake manifold.4. The method of claim 2 , wherein the intake air flow and the baseline intake air flow is measured via a mass air flow sensor positioned in the intake manifold ...

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24-01-2019 дата публикации

Internal combustion engine control apparatus

Номер: US20190024600A1
Принадлежит: HITACHI AUTOMOTIVE SYSTEMS LTD

Fuel injection control of an internal combustion engine requires an optimized fuel amount that can be burned completely with oxygen in intake air to be supplied, but the oxygen concentration in the atmospheric air is affected by humidity. By separately calculating a dry air flow rate that directly affects the oxygen amount and a humidity flow rate that is a change factor of the oxygen concentration in the intake air of the internal combustion engine, the fuel can be supplied to the cylinder of the internal combustion engine at an optimized air-fuel ratio. In addition, highly precise control involving EGR for flowback of a part of the exhaust gas flowing in the exhaust pipe to the intake pipe can also be achieved.

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23-01-2020 дата публикации

Internal combustion engine and method to increase the temperature of a liquid in the internal combustion engine

Номер: US20200025119A1
Принадлежит: Cummins Inc

A method, controller, and internal combustion engine including the controller and operable in accordance with the method by: determining a temperature of a working liquid in an engine block circuit ( 31, 35 ) of the internal combustion engine ( 10 ), the working liquid comprising a cooling liquid or a lubrication liquid; operating the internal combustion engine ( 10 ); engaging a thermal load responsive to the temperature of the liquid being below a first temperature threshold, wherein engaging the thermal load comprises at least one of increasing a pumping load of the internal combustion engine ( 10 ), or changing an air/fuel ratio, thereby adding heat to the engine block circuit ( 31, 35 ); controlling the thermal load as a function of the temperature of the liquid; and disengaging at least a portion of the thermal load responsive to the temperature of the liquid being above the low temperature limit.

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23-01-2020 дата публикации

Engine controls including direct targeting of in-cylinder

Номер: US20200025121A1
Принадлежит: Cummins Inc

Unique engine controls and apparatuses, methods and systems relating to the same are disclosed. One embodiment is method which utilizes an in-cylinder [O2] mass fraction model to generate exhaust gas recirculation (EGR) fraction references for both transient and steady state operating conditions. Further embodiments, forms, objects, features, advantages, aspects, and benefits shall become apparent from the following description and drawings.

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28-01-2021 дата публикации

THROTTLE CONTROLLED INTAKE SYSTEM

Номер: US20210025343A1
Принадлежит: K&N Engineering, Inc.

A throttle-controlled intake system is disclosed that provides a driver of a vehicle with greater control over engine functions and vehicle performance. The throttle-controlled intake system includes a control module that is coupled with an aircharger air intake. The control module processes input signals from a throttle pedal of the vehicle and sends modified throttle position signals to a throttle body of the vehicle so as to increase throttle responsiveness of the vehicle. The throttle-controlled intake system further includes a wiring harness and a signal adjuster. The wiring harness electrically couples the control module with the throttle pedal and the throttle body. The control module sends signals directly to the throttle body of the engine, bypassing an electronic control unit of the vehicle. The signal adjuster includes a rheostat that enables manual adjustment of the throttle responsiveness of the vehicle. 1. A throttle-controlled intake system for providing greater control over engine performance of a vehicle , the system comprising:an aircharger air intake system for conducting a filtered airstream to an air intake of the engine;a control module coupled with the aircharger air intake system and configured to send signals directly to a throttle body of the engine; anda wiring harness configured to electrically couple the control module with a throttle pedal and the throttle body.2. The system of claim 1 , wherein the aircharger air intake system comprises:an air filter comprising a filter medium configured to entrap particulates flowing within an airstream;an air box including one or more sidewalls and a mount wall;an intake tube coupled with the air filter and configured to conduct the airstream to the air intake; andan adapter configured to couple the intake tube with the air intake.3. The system of claim 2 , wherein the one or more sidewalls are configured to receive fasteners suitable for installing the air box onto the engine.4. The system of claim ...

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28-01-2021 дата публикации

APPARATUS AND METHOD FOR CONTROLLING ENGINE OF VEHICLE

Номер: US20210025345A1
Автор: BYEON Min
Принадлежит:

A method for controlling an engine of a vehicle includes: monitoring, by a controller, engine operation data including a crank position and an engine rotation speed; obtaining, by the controller, a measured air amount flowing into to a specific cylinder; calculating, by the controller, an expected air amount at an intake valve closing time based on the measured air amount; calculating, by the controller, a fuel amount based on the expected air amount; calculating, by the controller, an ignition timing based on the engine rotation speed and the expected air amount; and injecting, by the controller, the calculated fuel amount and performing ignition at the ignition timing. 1. A method for controlling an engine of a vehicle , the method comprising:monitoring, by a controller, engine operation data including a crank position and an engine rotation speed;obtaining, by the controller, a measured air amount flowing into a specific cylinder;calculating, by the controller, an expected air amount at an intake valve closing time based on the measured air amount;calculating, by the controller, a fuel amount based on the expected air amount;calculating, by the controller, an ignition timing based on the engine rotation speed and the expected air amount; andinjecting, by the controller, the calculated fuel amount and performing ignition at the ignition timing.2. The method of claim 1 , wherein obtaining the measured air amount is performed at a first time point that is a reference time point for identifying cylinders.3. The method of claim 2 , wherein calculating the expected air amount is performed at a second time point that is later than the first time point.4. The method of claim 1 , wherein calculating the expected air amount comprises:calculating a first air deviation amount based on a change rate of the measured air amount;calculating a second air deviation amount based on a change rate of a throttle opening; andcalculating the expected air amount based on the first air ...

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28-01-2021 дата публикации

SYSTEM AND METHOD FOR REDUCING COLD START EMISSIONS OF A MOTOR VEHICLE

Номер: US20210025364A1
Принадлежит:

The present disclosure provides a system for reducing cold start emissions of a motor vehicle. A brushless DC motor is coupled to an engine for cranking the engine. In response to receiving a cold start signal from a cold start actuator, the motor controller activates the brushless DC motor to crank the engine for a cold start duration and increase fuel pressure. In response to a motor controller receiving an auto start signal from an auto start actuator, the motor controller activates the brushless DC motor to crank the engine for an auto start duration that is shorter than the cold start duration. In response to determining that the cold start duration or the auto start duration has expired, an engine controller activates the fuel delivery system to deliver fuel to the engine. 1. A system for reducing cold start emissions for a motor vehicle , the system comprising:an internal combustion engine;a brushless DC motor coupled to the engine and configured to crank the engine;a fuel delivery system coupled to the engine and configured to deliver fuel to the engine, wherein the engine drives the fuel delivery system to increase the fuel pressure;a cold start actuator configured to generate a cold start signal;an auto start actuator configured to generate an auto start signal;a motor controller coupled to the brushless DC motor, wherein the motor controller is further coupled to the cold start actuator to receive the cold start signal from the cold start actuator, and wherein the motor controller is further coupled to the auto start actuator to receive the auto start signal from the auto start actuator; andan engine controller coupled to the cold start actuator to receive the cold start signal from the cold start actuator, wherein the engine controller is further coupled to the auto start actuator to receive the auto start signal from the auto start actuator, and wherein the engine controller is further coupled to the fuel delivery system;wherein, in response to the ...

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02-02-2017 дата публикации

CONTROL DEVICE FOR INTERNAL COMBUSTION ENGINE

Номер: US20170030284A1
Автор: Tanaka Satoru
Принадлежит: TOYOTA JIDOSHA KABUSHIKI KAISHA

Respective learned values of four parameters, that are an intake valve working angle deviation amount, an exhaust valve working angle deviation amount, an intake valve timing deviation amount and an exhaust pressure loss deviation amount, are calculated based on learned values of an intake valve flow rate error that are obtained under at least four different operating conditions. A correction amount with respect to an intake valve flow rate that is calculated with an intake valve model equation is calculated based on respective learned values of the four parameters using an intake valve flow rate error model equation in which coefficients are represented by functions of state quantities of an engine that include an engine speed and an intake pipe pressure. 1. A control device for an internal combustion engine equipped with an air flow sensor and an intake pipe pressure sensor that is configured to estimate an intake valve flow rate based on an estimated value or a measured value of an intake pipe pressure using an intake valve model equation in which an intake valve flow rate is represented by a linear expression that adopts an intake pipe pressure as a variable , the control device comprising:an error learning unit that is configured to learn, under at least four different operating conditions of the internal combustion engine, an intake valve flow rate error that is an error between a first intake valve flow rate obtained by inputting a measured value of an intake pipe pressure that is measured by the intake pipe pressure sensor into the intake valve model equation and a second intake valve flow rate that is calculated based on a measured value of a fresh air flow rate that is measured by the air flow sensor;a parameter learned value calculating unit that is configured to use an intake valve flow rate error model equation in which the intake valve flow rate error is represented by a polynomial expression comprising a first order term of a first parameter that is ...

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17-02-2022 дата публикации

ENGINE BRAKE CONTROL ACCORDING TO ENGINE OPERATING PARAMETERS

Номер: US20220049661A1
Принадлежит: CATERPILLAR INC.

An engine brake controller may obtain a performance characteristic of an engine. The engine brake controller may determine, based on the performance characteristic of the engine, that engine braking is enabled to control the engine. The engine brake controller may monitor a set of operating parameters of the engine. The engine brake controller may determine that operating values of the set of operating parameters satisfy corresponding thresholds of the set of operating parameters. The engine brake controller may determine, based on the operating values satisfying the corresponding thresholds, an engine braking configuration associated with activating engine braking of a set of cylinders of the engine. The set of cylinders may be a proper subset of a total quantity of cylinders of the engine. The engine brake controller may cause the engine braking to be applied to the set of cylinders to increase a temperature of exhaust gas from the engine. 1. A method , comprising:obtaining a performance characteristic of an engine;determining, based on the performance characteristic of the engine, that engine braking is enabled to control the engine;identifying, based on the performance characteristic, a set of operating parameters of the engine that are associated with the performance characteristic;monitoring the set of operating parameters to obtain operating values;determining that the operating values satisfy corresponding thresholds of the set of operating parameters;{'claim-text': 'wherein the set of cylinders is a proper subset of a total quantity of cylinders of the engine; and', '#text': 'determining, based on the operating values satisfying the corresponding thresholds, an engine braking configuration associated with activating engine braking of a set of cylinders of the engine to increase a temperature of exhaust gas from the engine,'}causing the engine braking to be applied to the set of cylinders to increase the temperature of the exhaust gas from the engine.2. The ...

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30-01-2020 дата публикации

SYSTEM AND METHOD FOR CONTROLLING COMPRESSOR OF COLD-START VEHICLE

Номер: US20200031202A1
Принадлежит:

A system for controlling a compressor may include an engine controller that controls a fuel injection amount corresponding to an engine load and an opening amount of a throttle by reflecting a required torque required for an air conditioner (A/C), an operation information detector for detecting operation information according to driving state of the vehicle, a compressor that generates pressure during operation of the A/C, an air conditioner relay which is turned on when the air conditioner operates and is turned off when the A/C is stopped, and a controller which determines an engine negative pressure of an intake manifold, and when the cooling water temperature is lower than the predetermined temperature and the intake manifold pressure is lower than the first threshold value, a cold-start intake manifold negative pressure insufficient event is generated to reduce the A/C duty in accordance with the entry into a negative pressure recovery mode. 1. A system for controlling a compressor of a cold-start vehicle , comprising:an engine control unit (ECU) that controls a fuel injection amount corresponding to an engine load and an opening amount of a throttle according to a required torque required for an air conditioner (A/C);an operation information detector for detecting operation information according to driving state of the cold-start vehicle;a compressor that generates pressure through operation of a piston in a cylinder utilizing power of an engine during operation of the air conditioner;an air conditioner relay which is turned on when the air conditioner operates and is turned off when the air conditioner is stopped in a response to an operation signal of the ECU; anda controller which is connected to the ECU and determines an engine negative pressure of an intake manifold stored in a brake booster at a value obtained by subtracting the engine negative pressure from atmospheric pressure detected by the operation information detector, and when a cooling water ...

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31-01-2019 дата публикации

SYSTEMS AND METHODS FOR IDENTIFYING A STUCK OPEN EXHAUST GAS RECIRCULATION VALVE

Номер: US20190032590A1
Автор: Conis Peter
Принадлежит:

Methods and systems are provided for determining whether an exhaust gas recirculation (EGR) valve is degraded and being held open in a vehicle system. In one example, a method may include, in response to an engine pull-down request, closing a throttle coupled to an intake manifold of the engine, closing the EGR valve, propelling the vehicle via an electric motor, and checking operation of the EGR valve based on both intake manifold pressure and exhaust pressure. For example, if the intake manifold pressure does not decrease by a threshold amount relative to the exhaust pressure, EGR valve degradation may be indicated. 1. A method , comprising:propelling a vehicle by an engine having a throttle coupled to an intake manifold;recirculating a portion of engine exhaust to the intake manifold through an exhaust gas recirculation (EGR) valve; andchecking operation of the EGR valve, based on both intake manifold pressure and exhaust pressure, after closing the throttle and the EGR valve when propelling the vehicle with an electric motor while the engine spins down to rest.2. The method of claim 1 , wherein the checking operation of the EGR valve commences after the vehicle transitions from being propelled by the engine to being propelled by the electric motor and concludes when the engine is at rest.3. The method of claim 2 , further comprising shutting off fuel supplied to the engine during the checking operation of the EGR valve.4. The method of claim 1 , wherein the EGR valve is not coupled to a position sensor.5. The method of claim 1 , wherein the EGR valve is positioned by a stepper motor.6. The method of claim 1 , wherein the checking operation of the EGR valve includes one or more of determining a difference between the intake manifold pressure and the exhaust pressure and determining a ratio of the intake manifold pressure to the exhaust pressure.7. The method of claim 6 , further comprising:in response to one or more of the difference between the intake manifold ...

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30-01-2020 дата публикации

PROCESS FOR DESIGNING A VIRTUAL SENSOR, CORRESPONDING VIRTUAL SENSOR, SYSTEM, AND COMPUTER-PROGRAM PRODUCTS

Номер: US20200032731A1
Принадлежит:

Described herein is a process for designing a virtual sensor that is able to estimate a variable of interest v as a function of a set of available variables u. The process comprises the steps of: —acquiring () a design data-set Dcomprising a number N of measured values v(ti) of the variable of interest v and corresponding measured values ũi(ti) of the available variables u; —determining a limit δ on the disturbances of the available variables uand a limit η on the errors of the method of measurement of the variable of interest v; —selecting () a Lipschitz function ƒ* with a respective Lipschitz constant γ, which is able to estimate the variable of interest v(t) as a function of a number n of past values of each available variable u, by executing the following steps one or more times for different numbers n: a) determining a value for the Lipschitz constant y; b) defining () a maximum limit ƒ(r(t)) and a minimum limit (r(t)) for the estimate of the variable of interest v as a function of the design data-set D, and moreover the number n, the value for the Lipschitz constant y, the limit δ on the disturbances of the available variables u, and the limit η on the errors of the method of measurement of the variable of interest v, and choosing a Lipschitz function ƒ* comprised between the maximum limit ƒ(r(t)) and the minimum limit (r(t)); c) determining () an estimation error ε*(ƒ*) for the Lipschitz function ƒ* and selecting the Lipschitz function ƒ*, associated to which is a respective Lipschitz constant y* and a respective number n*, that presents the minimum estimation error ε*(ƒ*(y*, n*)); and —implementing () the selected Lipschitz function ƒ* in an electronic circuit. 1. A method of designing a first virtual sensor adapted to estimate a variable of interest v as a function of a set of available variables u , the method comprising the steps of:{'sub': d', 'i', 'i', 'i', 'i, 'acquiring a design dataset Dcomprising a number N of measured values {tilde over (v)}(t) of ...

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04-02-2021 дата публикации

METHOD AND DEVICE FOR REGULATING THE PRESSURE OF THE COMBUSTION GAS AND/OR EXHAUST GAS OF A MACHINE

Номер: US20210033034A1
Принадлежит:

A method and a device for regulating the pressure of the combustion gas and/or exhaust gas of a machine, in particular an internal combustion engine. The combustion gas is supplied to the machine via a supply line and is discharged via an exhaust gas line, and the supply line and/or the exhaust gas line has a regulating device, the regulating device delimiting a pressure-regulated section of the supply line and/or the exhaust gas line, and wherein the pressure in each pressure-regulated section is measured at more than one point. 1. A method for regulating pressure of a combustion gas and/or exhaust gas of a machine , the combustion gas being supplied to the machine via a supply line and being discharged via an exhaust gas line , the supply line and/or the exhaust gas line having a regulating device , the regulating device delimiting a pressure-regulated section of the supply line and/or of the exhaust gas line ,whereinin each pressure-regulated section the pressure is measured at more than one point in order to reduce the effects of resonances, fluctuations and pressure waves on the pressure measurement, the pressure in each pressure-regulated section being adjusted on the basis of a weighted arithmetic mean value of the pressures measured at a plurality of points in the pressure-regulated section by regulation of the regulating device.2. The method according to claim 1 , wherein the pressure in each pressure-regulated section is kept substantially constant.3. The method according to claim 1 , wherein the pressure regulation in the pressure-regulated section in question is carried out on a basis of a time mean value of the measured pressures claim 1 , the mean value being formed over a period of time which is equal to or greater than a period of a resonance of a standing pressure wave in the pressure-regulated section in question.4. The method according to claim 1 , wherein the pressure in the pressure-regulated section is measured at exactly three points.5. The ...

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09-02-2017 дата публикации

SMALL ENGINE CONTROL SYSTEM AND METHOD FOR ENABLING THE USE OF TRADITIONAL CRANKSHAFT

Номер: US20170037794A1
Принадлежит:

An engine ignition control method and system for controlling ignition timing that computes a predicted crankshaft angular velocity based on prior computed and verified crankshaft angular velocity and acceleration and determines a capture window of the next crankshaft position sensor pickup signal for the verification of the predicted crankshaft angular velocity. The ignition control system also utilizes both crankshaft position pickup signals and the intake manifold air pressure measurements for determining the stroke of the combustion cycle in turn providing more accurately timed signals for the fuel injection and ignition systems. During engine starts, the engine ignition control system performs a series of continuous spark-triggering, determines if each spark-triggering being at the correct or incorrect point in the combustion cycle by detecting if there is any engine acceleration and adjusts the generation of the signal for the next spark-triggering accordingly. 1. A four stroke cycle internal combustion engine , comprising:a single notch crankshaft connected to said piston;a crankshaft position sensor configured to detect the single notch crankshaft rotational movements and generating periodic pickup electrical signals as the single notch crankshaft rotates during a combustion cycle, wherein one crankshaft position sensor pickup electrical signal being generated for each full rotation of the single notch crankshaft;an intake manifold air pressure sensor configured to continuously measure air pressure in an intake manifold in the engine; and continuously receiving the intake manifold air pressure measurements;', 'periodically receiving the crankshaft position sensor pickup electrical signals;', 'verifying a crankshaft angular velocity for each full rotation of the single notch crankshaft using a computed capture window of crankshaft position sensor pickup electrical signal;', 'if the current crankshaft angular velocity is verified, determining a spark advance ...

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07-02-2019 дата публикации

GAS ENGINE DRIVE SYSTEM AND METHOD OF CONTROLLING GAS ENGINE

Номер: US20190040807A1
Принадлежит: KAWASAKI JUKOGYO KABUSHIKI KAISHA

A gas engine drive system includes: a gas engine including combustion chamber; a turbocharger including a compressor and turbine; a fuel injection system that injects fuel gas into intake air that is supplied from compressor to combustion chamber via an intake passage; a pressure detector detecting a charge air pressure; a temperature detector detecting the intake air's temperature; and controller controlling the fuel injection system. The controller: when required output decreases, determines the charge air pressure's lean limit based on target injection amount corresponding to required output that has decreased; if the charge air pressure is lower than or equal to the lean limit, decreases fuel injection amount to target injection amount; if the charge air pressure is higher than lean limit, brings fuel injection amount to zero. When the charge air pressure becomes lower than or equal to the lean limit, increases fuel injection amount to target injection amount. 1. A gas engine drive system comprising:a gas engine including a combustion chamber formed by a cylinder and a piston;a turbocharger including a compressor connected to the combustion chamber via an intake passage and a turbine connected to the combustion chamber via an exhaust passage;a fuel injection system that injects a fuel gas into intake air that is supplied from the compressor to the combustion chamber via the intake passage;a pressure detector that detects a charge air pressure that is a pressure of the intake air; anda controller that controls the fuel injection system, the controller calculating a target injection amount of the fuel gas in accordance with a required output, wherein when the required output decreases, determines a lean limit of the charge air pressure based on the target injection amount corresponding to the required output that has decreased;', 'if the charge air pressure detected by the pressure detector is lower than or equal to the lean limit, decreases a fuel injection ...

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07-02-2019 дата публикации

METHODS AND SYSTEM FOR CONTROLLING ENGINE AIRFLOW WITH AN AUXILIARY THROTTLE ARRANGED IN SERIES WITH A VENTURI AND IN PARALLEL WITH A MAIN INTAKE THROTTLE

Номер: US20190040823A1
Принадлежит:

Methods and systems are provided for progressively opening and controlling each of a fuel vapor canister purge valve (CPV), an auxiliary throttle coupled in series with a venturi, and a main intake throttle arranged in parallel with the auxiliary throttle in order to deliver a desired intake airflow or manifold vacuum to an engine intake manifold. In one example, a method may include actuating a CPV to supply airflow to the engine via a fuel vapor canister while holding closed a main throttle and an auxiliary throttle arranged in parallel with the main throttle and in series with a venturi. The method further includes progressively opening the CPV, then the auxiliary throttle, and then the main throttle to achieve a desired intake manifold pressure. 1. A method for an engine , comprising:actuating a canister purge valve (CPV) to supply airflow to the engine via a fuel vapor canister while holding closed a main throttle and an auxiliary throttle arranged in parallel with the main throttle and in series with a venturi; andas a desired intake manifold pressure increases, progressively opening the CPV, then the auxiliary throttle, and then the main throttle to achieve the desired intake manifold pressure, wherein the venturi is an ejector, wherein the auxiliary throttle is coupled upstream of a motive flow inlet of the ejector and the CPV is coupled upstream of an entraining inlet of the ejector, and wherein progressively opening the CPV, then the auxiliary throttle, and then the main throttle includes not opening the auxiliary throttle until the CPV is fully open and not opening the main throttle until both the CPV and the auxiliary throttle are fully open.2. The method of claim 1 , wherein the actuating the CPV to supply airflow to the engine via the fuel vapor canister is responsive to an engine idle condition and wherein the desired intake manifold pressure is a desired intake manifold vacuum.3. The method of claim 2 , further comprising claim 2 , in response to an ...

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06-02-2020 дата публикации

Method for the Combined Identification of Phase Differences of the Inlet Valve Stroke and of the Outlet Valve Stroke

Номер: US20200040830A1
Автор: Braun Tobias
Принадлежит: CPT Group GmbH

Various embodiments include a method for identifying valve stroke phase differences during operation comprising: measuring dynamic pressure oscillations in the air intake tract; generating a corresponding signal; acquiring a crankshaft phase angle; acquiring the phase position and the amplitude of a signal frequency of the oscillations based on the pressure oscillation using discrete Fourier transformation; acquiring a line of an equal phase position and of equal amplitude of the signal frequency reflecting the inlet and the outlet stroke phase difference using reference lines; acquiring a common intersection point of a line of equal phase position and a line of equal amplitude by projection into a common plane; and determining the stroke phase differences and from the common intersection point. 1. A method for the combined identification of an inlet valve stroke phase difference and of an outlet valve stroke phase difference of a cylinder of a series-production internal combustion engine during operation , the method comprising:measuring dynamic pressure oscillations, assignable to the cylinder, of the intake air in the air intake tract of the respective series-production internal combustion engine during operation;generating a corresponding pressure oscillation signal based on the measured oscillation;acquiring a crankshaft phase angle signal corresponding to the measured oscillations;acquiring the phase position and the amplitude of a respectively selected signal frequency of the measured pressure oscillations in relation to the crankshaft phase angle signal based on the pressure oscillation signal, using discrete Fourier transformation;acquiring, on the basis of the acquired phase position and amplitude of the respective selected signal frequency, in each case a line of an equal phase position and of equal amplitude of the respectively same signal frequency, the line reflecting the inlet valve stroke phase difference and the outlet valve stroke phase difference, ...

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18-02-2021 дата публикации

System And Method For Controlling Engine Operating Parameters During Engine Warm-up To Reduce Emissions

Номер: US20210047974A1
Принадлежит: GM GLOBAL TECHNOLOGY OPERATIONS LLC

A system includes a temperature sensor configured to measure a temperature of exhaust gas produced by an engine, and a boost error module configured to determine a boost error of the engine. The system further includes a combustion control module configured to select at least one of a target boost pressure of the engine, a target EGR flow rate of the engine, and a target fuel injection parameter of the engine from a first set of target values when the exhaust gas temperature is less than a predetermined temperature and the boost error is less than a predetermined value, and to select the at least one of the target boost pressure, the target EGR flow rate, and the target fuel injection parameter from a second set of target values when the exhaust gas temperature is less than the predetermined temperature and the boost error is greater than the predetermined value.

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03-03-2022 дата публикации

RECHARGING MANAGEMENT FOR SKIPPING CYLINDERS

Номер: US20220065182A1
Принадлежит:

A variety of methods and arrangements are described for managing recharging of cylinders of an internal combustion engine during skip fire operation of the engine. In one method, a maximum allowed deactivation time for a cylinder is determined and the cylinder is recharged before the maximum allowed deactivation time is exceeded.

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14-02-2019 дата публикации

ENGINE SYSTEM AND METHOD FOR CONTROLLING SAME

Номер: US20190048788A1
Принадлежит:

In an engine system having a high-pressure stage turbocharger and a low-pressure stage turbocharger provided in series, a control device is configured to perform control such that when switching from multi-stage supercharging Cm to single-stage supercharging Cs, after only the exhaust bypass valve is opened, and thereafter, an intake bypass valve is opened later than at a timing at which the exhaust bypass valve is opened. 1. An engine system including: a plurality of turbochargers arranged in series; an intake bypass passage which bypasses a high-pressure stage compressor of a high-pressure stage turbocharger arranged at a downstream side of an intake passage among the plurality of turbochargers; an intake bypass valve which adjusts a flow rate of intake air passing through the intake air bypass passage; an exhaust bypass passage which bypasses a high-pressure stage turbine of the high-pressure stage turbocharger; and an exhaust bypass valve which adjusts a flow rate of exhaust gas passing through the exhaust bypass passage , comprisinga control device which controls opening-and-closing of the intake valve and the exhaust bypass valve,wherein at a time when both the intake bypass valve and the exhaust bypass valve are opened and supercharging of the high-pressure stage turbocharger is switched to a stopped state from a state where both the intake bypass valve and the exhaust bypass valve are closed and the high-pressure stage turbocharger performs supercharging, the control device performs control such that, after only the exhaust bypass valve is opened, the intake bypass valve is opened later than a timing at which the exhaust bypass valve is opened.2. The engine system according to claim 1 , further comprising:a pressure difference acquisition device which directly or indirectly acquires a pressure difference between a pressure at an upstream side and a pressure at a downstream side of the high-pressure stage compressor in the intake passage,wherein the control ...

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14-02-2019 дата публикации

CONTROLLER FOR INTERNAL COMBUSTION ENGINE

Номер: US20190048816A1
Принадлежит: TOYOTA JIDOSHA KABUSHIKI KAISHA

A controller for an internal combustion engine includes a processing circuit that performs a dither control process on condition that a temperature increase request of a catalyst is made. The processing circuit operates fuel injection valves so that during the dither control process, one or more cylinders are lean combustion cylinders in a first period and another one or more cylinders are rich combustion cylinders and so that the average value of an exhaust gas-fuel ratio is a target air-fuel ratio in a second period including the first period. The dither control process is restricted in a manner that, on condition that the rich process is performed, the degree of richening of the richest exhaust gas-fuel ratio of exhaust gas-fuel ratios in the cylinders is reduced. 1. A controller for an internal combustion engine , wherein the internal combustion engine includes a catalyst configured to purify exhaust gas discharged from a plurality of cylinders , and a plurality of fuel injection valves respectively configured to supply fuel to the plurality of cylinders , and the internal combustion engine is configured to allow oxygen to flow into the catalyst without undergoing a combustion stroke , the controller comprisinga processing circuit configured to perform a dither control process on condition that a temperature increase request of the catalyst is made, wherein the processing circuit operates the fuel injection valves so that during the dither control process, one or more of the plurality of cylinders are lean combustion cylinders and another one or more of the plurality of cylinders are rich combustion cylinders in a first period and so that an average value of an exhaust gas-fuel ratio is a target air-fuel ratio in a second period including the first period, and wherein the lean combustion cylinders are cylinders having a leaner air-fuel ratio than a stoichiometric air-fuel ratio, and the rich combustion cylinders are cylinders having a richer air-fuel ratio than ...

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25-02-2021 дата публикации

Method for determining the cylinder air-charge of an internal combustion engine in a non-fired operation

Номер: US20210054793A1
Принадлежит: VOLKSWAGEN AG

A method for determining the cylinder air-charge of an internal combustion engine in a non-fired operation, wherein a method for determining the cylinder air-charge in a fired operation is performed. According to the invention, provision is made that in the method for determining the cylinder air-charge in the fired operation, a correction factor is provided as a function of engine speed and engine load which adjusts the value of the cylinder air-charge determined by the method in the fired operation to the non-fired operation. Thus, the previously known methods can be improved and made more efficient, in particular in view of the deviations of up to 30% between the cylinder air-charge values in the non-fired operation and the modeled values of the fired operation.

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25-02-2021 дата публикации

ENGINE CONTROLLER, ENGINE CONTROL METHOD, AND MEMORY MEDIUM

Номер: US20210054801A1
Принадлежит: TOYOTA JIDOSHA KABUSHIKI KAISHA

An engine controller is provided. A second calculation process calculates an intake air amount without using an output of an air flow meter. A second determination process determines whether an intake air pulsation in an intake passage is great without using the output of the air flow meter. When the intake air pulsation is determined to be great by at least one of a first determination process and the second determination process, a calculation method switching process selects the calculated value of the intake air amount obtained by the second calculation process as a calculated value of the intake air amount used to determine an operation amount of an actuator. 1. An engine controller that controls an operating state of an engine through operation of an actuator provided to the engine , the engine controller is configured to perform:a first calculation process that calculates an intake air amount introduced into a cylinder of the engine, the first calculation process calculating the intake air amount based on an output of an air flow meter that detects an intake air flow rate in an intake passage of the engine;a second calculation process that calculates the intake air amount based on at least one of a detected value of an intake pipe pressure and a throttle opening degree, without using the output of the air flow meter;a first determination process that determines whether an intake air pulsation in the intake passage is great based on the output of the air flow meter;a second determination process that determines whether the intake air pulsation in the intake passage is great based on at least one of the detected value of the intake pipe pressure and the throttle opening degree, without using the output of the air flow meter; and when the intake air pulsation is not determined to be great by both of the first determination process and the second determination process, the calculation method switching process selects the calculated value of the intake air amount ...

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13-02-2020 дата публикации

ENGINE SYSTEM AND METHOD OF CONTROLLING A TURBOCHARGER AND TURBOCHARGER OF AN ENGINE SYSTEM

Номер: US20200049060A1
Принадлежит:

An engine system includes an internal combustion engine including an intake manifold having an inlet, variable geometry turbocharger (VGT) including a mechanical compressor having a mechanical compressor outlet fluidically connected to the intake manifold and a turbine, and an electric compressor including an electric compressor outlet fluidically connected to the intake manifold. A first sensor is arranged to detect a first fluid pressure value at the mechanical compressor outlet. A second sensor is arranged to detect a second fluid pressure value at the inlet of the intake manifold. A controller is operatively connected to first sensor and the second sensor. The controller is operable to adjust operation of at least one of the VGT and the electric compressor when one of the first fluid pressure value and the second fluid pressure value reaches a selected value. 1. An engine system comprising:an internal combustion engine including an intake manifold having an inlet;a variable geometry turbocharger (VGT) including a mechanical compressor having a mechanical compressor outlet fluidically connected to the intake manifold and a turbine;an electric compressor including an electric compressor outlet fluidically connected to the intake manifold;a first sensor arranged to detect a first fluid pressure value at the mechanical compressor outlet;a second sensor arranged to detect a second fluid pressure value at the inlet of the intake manifold; anda controller operatively connected to the first sensor and the second sensor, the controller being operable to adjust operation of at least one of the VGT and the electric compressor when one of the first fluid pressure value and the second fluid pressure value reaches a selected value.2. The engine system according to claim 1 , wherein the controller adjusts the VGT when a minimum of the first fluid pressure value and the second fluid pressure value corresponds to the selected value.3. The engine system according to claim 2 , ...

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13-02-2020 дата публикации

METHOD AND DEVICE FOR OPERATING AN INTERNAL COMBUSTION ENGINE

Номер: US20200049081A1
Принадлежит:

A method for ascertaining whether a combustion process is being carried out in a cylinder of an internal combustion engine, it being decided whether or not the combustion process is present as a function of a relative angle between a characteristic signature of a variable characterizing a time curve of a state variable of the internal combustion engine and a specifiable crankshaft angle. 114-. (canceled)15. A method for ascertaining whether a combustion process is being carried out in a cylinder of an internal combustion engine , the method comprising:deciding whether the combustion process is present as a function of a relative angle between a characteristic signature of a variable characterizing a time curve of an energy of the internal combustion engine and a specifiable crankshaft angle;wherein the energy includes a kinetic energy given by the rotational movement of the internal combustion engine.16. The method of claim 15 , wherein the characteristic signature is a characteristic value of a time curve of a Fourier component claim 15 , the energy.17. The method of claim 15 , wherein it is decided that the combustion process has taken place if the phase shift is within a specifiable crankshaft angular range around the specifiable crankshaft angle.18. The method of claim 17 , wherein the crankshaft angular range is situated symmetrically about the specifiable crankshaft angle.19. The method of claim 15 , wherein the kinetic energy including a rotational energy of the crankshaft and a kinetic energy of an up-and-down movement of pistons of the internal combustion engine.20. The method of claim 15 , wherein the energy also including a volume work of the gas filling in the cylinder.21. The method of claim 15 , wherein the specifiable crankshaft angle is a top dead center of the cylinder.22. The method of claim 15 , wherein the specifiable crankshaft angle being a value in an interval having an initial value and an end value claim 15 , the initial value being one of ...

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13-02-2020 дата публикации

ACTIVE COMBUSTION AIR INTAKE SYSTEM FOR TRUCK, TRACTOR, OR BUS VEHICLE

Номер: US20200049082A1
Принадлежит:

A combustion air intake apparatus for a truck, tractor, or bus vehicle for highway use includes an air deflecting element that is selectively deployable to cause dynamic air pressure created by vehicle motion to increase static air, pressure within the intake apparatus under appropriate conditions. Deployment or retraction of the air deflecting element is responsive to at least one of forward speed of the vehicle, air pressure downstream of an air inlet opening, or throttle position, and may further be responsive to detection of precipitation and/or particulate material. An air deflecting element may include a moveable plate or flap, moveable louvers, or a moveable duct. 1. A combustion air intake apparatus for a truck , tractor , or bus vehicle for highway use , the combustion air intake apparatus comprising:a frame defining an air inlet opening in fluid communication with the combustion air intake apparatus;at least one air deflecting element proximate to the frame, wherein the at least one air deflecting element comprises a retracted position and comprises a deployed position in which the at least one air deflecting element is arranged to deflect air into the air inlet opening while the truck, tractor, or bus vehicle is traveling in a forward direction; anda controller operatively coupled with at least one actuator to selectively deploy or retract the at least one air deflecting element, wherein the controller is configured to control deployment or retraction of the at least one air deflecting element responsive to at least one signal indicative of one or more sensed parameters; andwherein the air inlet opening is open to admit ambient air into the combustion air intake apparatus when the at least one air deflecting element is in the deployed position and when the at least one air deflecting element is in the retracted position.2. The combustion air intake apparatus of claim 1 , wherein the controller is configured to control deployment or retraction of the at ...

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22-02-2018 дата публикации

METHODS AND SYSTEMS FOR CLEARING THROTTLE OBSTRUCTION

Номер: US20180051635A1
Принадлежит:

Methods and systems are provided for detecting throttle obstructions in a vehicle. In one example, after engine start up, throttle icing condition resulting from the throttle capturing ice fragments originally formed within a charge air cooler or an intake passage upstream of throttle, may be detected. Responsive to detecting the throttle icing condition, the throttle may be adjusted to a fully open position independent of accelerator pedal position, and maintained at the fully open position for a threshold duration while maintaining a desired torque, to release the captured ice fragments from the throttle. 1. A method for an engine , comprising: adjusting a throttle to a fully open position;', 'maintaining the throttle at the fully open position for a threshold duration while maintaining a desired torque; and', 'after the threshold duration, adjusting the throttle to a desired position, the desired position based on the desired torque;', 'wherein the throttle obstruction is detected after engine start up., 'in response to detecting a throttle obstruction,'}2. The method of claim 1 , wherein the throttle obstruction is detected based on one or more of a current throttle rotation speed from the desired position to the closed position less than an expected speed claim 1 , and a voltage applied to a throttle motor to move the throttle from the desired position to the closed position greater than an expected voltage claim 1 , the throttle motor coupled to the throttle and controlling rotation of the throttle.3. The method of claim 1 , wherein maintaining the desired torque includes one or more of selectively deactivating one or more cylinders of the engine by disabling fueling to the one or more cylinders claim 1 , retarding a spark timing from MBT claim 1 , and providing a lean air fuel ratio.4. The method of claim 1 , wherein detecting the throttle obstruction further includes determining if one or more throttle icing conditions are present; and wherein the one or ...

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22-02-2018 дата публикации

Method and Apparatus for Controlling a Two-Stage Air Charging System with Mixed EGR

Номер: US20180051639A1
Принадлежит: GM GLOBAL TECHNOLOGY OPERATIONS LLC

A two-stage air charging system for an internal combustion engine with mixed exhaust gas recirculation includes a high pressure exhaust gas recirculation loop, a low pressure exhaust gas recirculation loop, an air throttle system, a turbo air charging system, and an electric air charging system. A method to control the system includes monitoring desired operating target commands and operating parameters. Feedback control signals are determined based upon the monitored desired operating target commands and the monitored operating parameters. The two-stage air charging system is controlled based on system control commands for each of the high pressure exhaust gas recirculation loop, the low pressure exhaust gas recirculation loop, the air throttle system, the turbo air charging system and the electric air charging system.

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13-02-2020 дата публикации

Monitoring and Control System for a Flow Duct

Номер: US20200049540A1
Принадлежит:

A monitoring and control system for a flow duct and a method for determining a component status of an operational component disposed within a flow passage of the flow duct utilizing the system are provided. In one exemplary aspect, the system includes at least two sensors that are disposed within the flow passage and configured to sense a characteristic of a fluid flowing therethrough. The sensors may be averaging sensors. Each sensor extends circumferentially about an axial centerline defined by the flow duct. The sensors are arranged in an overlapped arrangement. Particularly, the sensors extend circumferentially about the axial centerline such that the sensors physically overlap one another circumferentially. Additionally, the sensors may be disposed within the same or substantially the same plane axially. Signals generated by the sensors may be utilized to monitor and control the fluid and various operational components disposed within the flow passage. 1. A system for a flow duct defining a flow passage and an axial direction , a radial direction , and a circumferential direction , the system comprising:a first sensor extending along the circumferential direction within the flow passage; anda second sensor extending along the circumferential direction within the flow passage, wherein the first sensor extends along the circumferential direction such that at least a portion of the first sensor physically overlaps the second sensor along the circumferential direction.2. The system of claim 1 , wherein the first sensor and the second sensor both extend along the circumferential direction in the same or substantially the same plane along the axial direction.3. The system of claim 1 , wherein the system further comprises:a third sensor extending along the circumferential direction within the flow passage, wherein the third sensor extends along the circumferential direction such that the third sensor physically overlaps the first sensor along the circumferential ...

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23-02-2017 дата публикации

Controller for supercharger-equipped internal combustion engine and control method thereof

Номер: US20170051662A1
Принадлежит: Mazda Motor Corp, Mitsubishi Electric Corp

The objective of the present invention is to provide a controller for a supercharger-equipped internal combustion engine and a control method that can reduce man-hours for data measurement and matching, which are required to perform while the internal combustion engine and the supercharger are combined. In a controller, a target turbine flow rate for realizing a target compressor driving force is calculated; a target wastegate flow rate is calculated based on an exhaust gas flow rate and the target turbine flow rate; a target turbine-upstream pressure is calculated based on a target before/after-turbine pressure ratio for realizing the target compressor driving force and a turbine-downstream pressure; a target gate effective opening area is calculated based on the target wastegate flow rate, the target before/after-turbine pressure ratio, and the target turbine-upstream pressure; then, a gate valve control value is calculated.

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15-05-2014 дата публикации

Intake device for internal combustion engine with supercharger

Номер: US20140130783A1
Автор: Daisuke Takaki
Принадлежит: Nissan Motor Co Ltd

A compressor ( 5 ) of a turbo supercharger ( 3 ) is located between an air flow meter ( 12 ) and a throttle valve ( 13 ). An EGR passage ( 21 ) is connected to an intake passage ( 10 ) at a joint ( 22 ) upstream of the compressor ( 5 ). The following relationship ( 1 ) is satisfied between an intake passage volume (V 1 ) from the air flow meter ( 12 ) to the junction ( 22 ), an intake passage volume (V 2 ) from the compressor ( 5 ) to the throttle valve ( 13 ) and a maximum boost pressure (P b ) under operating conditions in which the introduction of EGR gas is performed, in order to prevent a mixed gas of fresh air and EGR gas from flowing back to the air flow meter ( 12 ) even under the maximum boost pressure (P b ). V 1 > V 2 × ( P b - P 1 P 1 ) × ( P 1 P b ) κ - 1 κ ( 1 )

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10-03-2022 дата публикации

THROTTLE CONTROLLED INTAKE SYSTEM

Номер: US20220074359A1
Принадлежит: K&N Engineering, Inc.

A throttle-controlled intake system is disclosed that provides a driver of a vehicle with greater control over engine functions and vehicle performance. The throttle-controlled intake system includes a control module that is coupled with an aircharger air intake. The control module processes input signals from a throttle pedal of the vehicle and sends modified throttle position signals to a throttle body of the vehicle so as to increase throttle responsiveness of the vehicle. The throttle-controlled intake system further includes a wiring harness and a signal adjuster. The wiring harness electrically couples the control module with the throttle pedal and the throttle body. The control module sends signals directly to the throttle body of the engine, bypassing an electronic control unit of the vehicle. The signal adjuster includes a rheostat that enables manual adjustment of the throttle responsiveness of the vehicle. 1. A throttle-controlled intake system for providing greater control over engine performance of a vehicle , the system comprising:an aircharger air intake system for conducting a filtered airstream to an air intake of the engine;a control module coupled with the aircharger air intake system and configured to send signals directly to a throttle body of the engine; anda wiring harness configured to electrically couple the control module with a throttle pedal and the throttle body.2. The system of claim 1 , wherein the aircharger air intake system comprises:an air filter comprising a filter medium configured to entrap particulates flowing within an airstream;an air box including one or more sidewalls and a mount wall;an intake tube coupled with the air filter and configured to conduct the airstream to the air intake; andan adapter configured to couple the intake tube with the air intake.3. The system of claim 2 , wherein the one or more sidewalls are configured to receive fasteners suitable for installing the air box onto the engine.4. The system of claim ...

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21-02-2019 дата публикации

Intoxicated Vehicle Driver Accident Reduction System

Номер: US20190054923A1
Автор: Jones Daniel
Принадлежит:

A sobriety ignition interlock system including an engine control device and a method for managing available vehicle engine power using the sobriety ignition interlock system. The engine control device includes an engine control processor (ECP) that is electronically connected in between an engine control unit (ECU), an engine sensor assembly, and a sobriety processor. The sobriety processor determines a sobriety level of a vehicle driver and sends a corresponding sobriety signal to the ECP. The ECP intercepts an engine signal transmitted from the engine sensor assembly to the ECU and manipulates the engine signal according to the sobriety signal, in order to manage the available power of the vehicle engine. 1. A method of managing available vehicle engine power , the method comprises the steps of:providing a vehicle engine, an engine control processor (ECP), a sobriety processor, an engine control unit (ECU), and an engine sensor assembly;calculating, by the sobriety processor, a sobriety level for a vehicle driver;comparing, by the sobriety processor, the sobriety level to a sobriety threshold in order to produce a sobriety signal;sending, by the sobriety processor, the sobriety signal to the ECP;intercepting, by the ECP, an engine signal transmitted from the engine sensor assembly to the ECU; andmanipulating, by the ECP, the engine signal according to the sobriety signal.2. The method of managing available vehicle engine power claim 1 , the method as claimed in further comprises the step of:terminating, by the ECP, the engine signal, if the sobriety level is above the sobriety threshold.3. The method of managing available vehicle engine power claim 1 , the method as claimed in further comprises the step of:sending, by the ECP, the engine signal to the ECU, if the sobriety level is below the sobriety threshold.4. The method of managing available vehicle engine power claim 1 , the method as claimed in further comprises the steps of:transforming, by the ECP, the ...

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10-03-2022 дата публикации

Apparatus and Method for Diagnosing Failure of Bypass Valve

Номер: US20220074812A1
Принадлежит: Vitesco Technologies GmbH

Some embodiments of the teachings herein include an apparatus for diagnosing bypass valve failure in an electric supercharger with a motor and an electric compressor comprising: a bypass valve on a bypass line branching from an intake line with the electric supercharger; and a control unit which assesses the vehicle-state information to determine whether failure criteria of a bypass valve start are satisfied. If the failure criteria are satisfied, the control unit transmits ‘open’ or ‘close’ control instructions to the bypass valve and transmits, to the electric supercharger, a specific rotational-speed target value for determining whether the bypass valve is in the normal open state or the normal closed state, thereby determining whether the bypass valve is subject to stuck-open failure or stuck-closed failure. 1. An apparatus for diagnosing bypass valve failure in an electric supercharger with a motor and an electric compressor actuated by the motor to supply supercharged air to the combustion chamber of an engine , the apparatus comprising:a bypass valve on a bypass line branching from an intake line with the electric supercharger, wherein the bypass valve joins the intake line at the front end of a throttle valve for adjusting an intake amount supplied to the combustion chamber;a vehicle-state input unit receiving vehicle-state information; anda control unit which assesses the vehicle-state information to determine whether failure criteria of a bypass valve start are satisfied; andif the failure criteria are satisfied, the control unit transmits ‘open’ or ‘close’ control instructions to the bypass valve and transmits, to the electric supercharger, a specific rotational-speed target value for determining whether the bypass valve is in the normal open state or the normal closed state, thereby determining whether the bypass valve is subject to stuck-open failure or stuck-closed failure.2. The apparatus for diagnosing bypass valve failure of claim 1 , wherein the ...

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01-03-2018 дата публикации

Method and apparatus for controlling operation of an internal combustion engine

Номер: US20180058350A1
Принадлежит: GM GLOBAL TECHNOLOGY OPERATIONS LLC

An internal combustion engine is described. Controlling the internal combustion engine includes gathering engine operating data during steady-state engine operation, including gathering a first dataset associated with a cylinder air charge during steady-state operation of the engine in the PVO state and gathering a second dataset associated with a cylinder air charge during steady-state operation of the engine in the NVO state. An optimization routine is executed to determine a first subset of parameters associated with a first relationship for a cylinder air charge model based upon the second dataset. The optimization routine is also executed to determine a second subset of parameters associated with a second relationship for the cylinder air charge model based upon the first dataset. A cylinder air charge is determined in real-time during engine operation based upon the cylinder air charge model and the first and second subsets of parameters.

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01-03-2018 дата публикации

SYSTEM AND METHOD FOR OPERATING AN ENGINE

Номер: US20180058391A1
Принадлежит:

Methods and systems for operating an engine including an external exhaust gas recirculation (EGR) system are presented. In one non-limiting example, output of a differential pressure sensor and output of an intake manifold pressure sensor are used as a basis for determining whether or not EGR system degradation is present while an engine is operating at conditions other than engine idle conditions. 1. A method for operating an engine , comprising:receiving a differential pressure sensor output and intake manifold pressure sensor output to a controller;judging whether or not exhaust gas recirculation system degradation is present responsive to the differential pressure sensor output and the intake manifold pressure sensor output while operating an engine with intake manifold pressure greater than atmospheric pressure via the controller; andadjusting an actuator via the controller responsive to the judgment.2. The method of claim 1 , where the actuator is a waste gate.3. The method of claim 1 , further comprising converting the differential pressure sensor output to a differential pressure claim 1 , and where the judgement is based on the differential pressure exceeding a second threshold.4. The method of claim 3 , further comprising converting the intake manifold pressure sensor output to an intake manifold pressure claim 3 , and where the judgement is also based on the intake manifold pressure minus a barometric pressure exceeding a first threshold.5. The method of claim 1 , further comprising converting the differential pressure sensor output to a differential pressure claim 1 , and where the judgement is based on an absolute value of the differential pressure exceeding an eighth threshold.6. The method of claim 5 , further comprising converting the intake manifold pressure sensor output to an intake manifold pressure claim 5 , and where the judgement is also based on the intake manifold pressure minus a barometric pressure exceeding a seventh threshold.7. The ...

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20-02-2020 дата публикации

Optimized fuel management system for direct injection ethanol enhancement of gasoline engines

Номер: US20200056557A1
Принадлежит: Massachusetts Institute of Technology

Fuel management system for enhanced operation of a spark ignition gasoline engine. Injectors inject an anti-knock agent such as ethanol directly into a cylinder. It is preferred that the direct injection occur after the inlet valve is closed. It is also preferred that stoichiometric operation with a three way catalyst be used to minimize emissions. In addition, it is also preferred that the anti-knock agents have a heat of vaporization per unit of combustion energy that is at least three times that of gasoline.

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05-03-2015 дата публикации

Atmospheric pressure estimation device of outboard motor

Номер: US20150066256A1
Принадлежит: Mitsubishi Electric Corp

By obtaining an atmospheric pressure learning value by applying filtering to an estimated atmospheric pressure found from an estimated atmospheric pressure map in an atmospheric pressure learning region matched in advance, and by constantly updating this atmospheric pressure learning value, stable and highly reliable atmospheric pressure estimation can be achieved. Also, a pre-set parameter value or the last atmospheric pressure learning value is used as the initial atmospheric pressure value and an unstable intake pressure value at the engine start in a battery-less state is not used. Hence, it becomes possible to provide an estimated atmospheric pressure with which high drivability is achievable by fully exploiting the engine performance as soon as the engine is started.

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17-03-2022 дата публикации

FUEL TANK ISOLATION VALVE

Номер: US20220082057A1
Принадлежит: TLX Technologies, LLC

A fuel tank isolation valve (FTIV) and methods of operation are provided. The FTIV includes first and second solenoid valves with the movable valve member of one of the solenoid valves seating against a movable valve member of the other one of the solenoid valves. One of the solenoid valves may be refueling valve allowing for evacuation of fuel vapor during refueling operations as well as to allow for purging high vapor pressure within the fuel tank. One of the solenoid valves may be a proportional valve used to control the flow of fuel vapor to an intake manifold of an operating internal combustion engine as well as to reduce a vacuum generated within the fuel tank. 1. A fuel tank isolation valve comprising:a valve body defining an inlet, an outlet and a flow path between the inlet and outlet;a first valve seat located within the flow path between the inlet and outlet;a first solenoid valve having a first valve member that is configured to seat on the first valve seat, the first solenoid valve having a first armature operably connected to the first valve member for imparting movement to the first valve member between a seated position and unseated position relative to the first valve seat, the first valve member defining a first aperture therethrough and a second valve seat surrounding the first aperture; anda second solenoid valve having a second valve member that is configured to seat on the second valve seat, the second solenoid valve having a second armature operably connected to the second valve member for imparting movement to the second valve member between a seated position and unseated position relative to the second valve seat.2. The fuel tank isolation valve of claim 1 , wherein the second solenoid valve is a proportional valve.3. The fuel tank isolation valve of claim 1 , wherein the first and second armatures move along first and second axes claim 1 , respectively claim 1 , that are parallel or coaxial to one another.4. The fuel tank isolation valve of ...

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17-03-2022 дата публикации

Electronic fuel injection system and method for engines

Номер: US20220082069A1
Принадлежит: Kohler Co

A system includes an electronic fuel injection system of an engine, the electronic fuel injection system including an electronic governor control unit for controlling various functions of the engine.

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28-02-2019 дата публикации

Exhaust Control Valve Controlling Exhaust Gas Flow in a Turbocharger System

Номер: US20190063306A1
Автор: Zhang Xiaogang
Принадлежит:

Methods and systems for adjusting a branch communication valve in a dual scroll turbocharger system are provided. In one example, a method may include adjusting a position of a valve arranged between a first adaptor and a second adaptor to enable mixing of exhaust received from an exhaust manifold, the exhaust delivered to a first scroll and a second scroll of a turbocharger to drive a turbine during certain engine operating conditions. 111-. (canceled)12. A system having a dual scroll turbocharger , comprising:a first scroll;a second scroll, fluidically separated from the first scroll via a dividing wall;a first adaptor coupled to an outlet of an exhaust manifold, the first adaptor comprising a first hollow cylinder having first divider traversing an interior volume of the first adaptor;a second adaptor coupled to an inlet of the first scroll and an inlet of the second scroll, the second adaptor comprising a second hollow cylinder comprising a second divider traversing an interior volume of the second adaptor; anda valve coupled to and positioned between the first adaptor and the second adaptor to control an amount of mixing of exhaust received from the exhaust manifold, the exhaust delivered to the first scroll and the second scroll of the turbocharger, the valve comprising a third hollow cylinder comprising a third divider traversing an interior volume of the valve.1311. The dual scroll turbocharger system of claim , wherein the valve is positionable in a continuous manner through selected positions , the selected positions including: a second position wherein the valve is open to enable mixing of exhaust flow to each of the first and second scrolls; and', 'a third position wherein the valve is opened a metered amount to enable partial mixing of exhaust flow to each of the first and second scrolls., 'a first position wherein the valve is closed to separate exhaust flow to each of the first scroll and second scroll;'}14. The system of claim 13 , wherein each of ...

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28-02-2019 дата публикации

Method, System and Mobile User Appliance for Adapting an Energy Utilization Process of a Vehicle

Номер: US20190063354A1
Автор: AUGST Alexander
Принадлежит:

Method, apparatus and mobile user appliance for adapting an energy utilization process of a vehicle. At least one value of an energy utilization characteristic quantity is ascertained that represents a first energy utilization process in a first vehicle, and a value of a parameter is ascertained that represents at least one constraint of the energy utilization in the first vehicle during the energy utilization process. A mathematical relationship between at least one of the provided values of an energy utilization characteristic quantity, the values of the parameters of the first vehicle and parameters for a possible second energy utilization process of a second vehicle is ascertained. Further, a data record is provided on the basis of the ascertained mathematical relationship, and a profile data record is provided that comprises the data record. Depending on the profile data record of the first vehicle and second parameter, a fuel composition and/or a split of energy types for a drive system of a second vehicle and/or control data for an energy distribution process in a second vehicle is/are ascertained for the second energy utilization process. 1. A method for adapting an energy utilization process of at least one vehicle , the method comprising the steps of:{'b': '1', 'ascertaining at least one value of an energy utilization characteristic quantity (K_) that represents a first energy utilization process in a first vehicle,'}{'b': '1', 'ascertaining at least one value of a parameter (P_) that represents at least one constraint of the energy utilization in the first vehicle during the first energy utilization process,'}{'b': 1', '1', '2, 'determining a mathematical relationship between at least one or more of the provided values of the at least one energy utilization characteristic quantity (K_), the applicable values of the parameters (P_) of the first vehicle and one or more parameters (P_) for a possible second energy utilization process of a second vehicle,'} ...

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17-03-2022 дата публикации

MONITORING AND CONTROL SYSTEM FOR A FLOW DUCT

Номер: US20220082422A1
Принадлежит:

A monitoring and control system for a flow duct and a method for determining a component status of an operational component disposed within a flow passage of the flow duct utilizing the system are provided. In one exemplary aspect, the system includes at least two sensors that are disposed within the flow passage and configured to sense a characteristic of a fluid flowing therethrough. The sensors may be averaging sensors. Each sensor extends circumferentially about an axial centerline defined by the flow duct. The sensors are arranged in an overlapped arrangement. Particularly, the sensors extend circumferentially about the axial centerline such that the sensors physically overlap one another circumferentially. Additionally, the sensors may be disposed within the same or substantially the same plane axially. Signals generated by the sensors may be utilized to monitor and control the fluid and various operational components disposed within the flow passage. 1. A controller , comprising:one or more memory devices; and{'claim-text': ['receive a first signal from a first sensor positioned within a flow passage defined by a duct, the first signal being indicative of a characteristic of a fluid flowing proximate the first sensor;', 'receive a second signal from a second sensor positioned within the flow passage, the second signal indicative of a characteristic of the fluid flowing proximate the second sensor, the first sensor physically overlapping the second sensor in part along a circumferential direction and not physically overlapping the second sensor in part along the circumferential direction;', 'determine a component status of one or more operational components disposed within the flow passage based at least in part on the first signal and the second signal; and', 'generate a control action based at least in part on the component status of the one or more operational components.'], '#text': 'one or more processors configured to:'}2. The controller of claim 1 , ...

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29-05-2014 дата публикации

Method and apparatus for determining abnormality in exhaust gas recirculation amount

Номер: US20140144219A1
Принадлежит: HINO MOTORS LTD

An absolute value of a deviation of an actual EGR ratio, calculated in a current operational status of an engine 1, from a target EGR ratio set on the basis of current operational status of the engine 1 is acquired and is multiplied by a quotient, as gain, acquired from division of a feedback correction amount of opening degree of an EGR valve 12 by an upper limit of the feedback correction amount to determine normality when an acquired product is close to “0” and determine higher degree of abnormality the further the product is away from “0”.

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10-03-2016 дата публикации

Internal combustion engine egr flow rate estimation apparatus and internal combustion engine control apparatus

Номер: US20160069285A1
Принадлежит: Mitsubishi Electric Corp

Based on an internal EGR ratio and desired external and internal EGR ratios, an EGR valve opening degree is feedback-controlled based on a desired EGR ratio, calculated in such a way as to perform correction so that a total EGR ratio becomes constant, and an EGR effective opening area obtained through learning of the relationship between an EGR valve opening degree and an effective opening area; thus, a correct characteristic of EGR valve opening degree vs. effective opening area can be maintained and hence it is made possible to absorb variations, changes with time, and even environmental conditions, while making an EGR valve and an intake/exhaust VVT collaborate with each other; therefore, an EGR flow rate can accurately be estimated.

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27-02-2020 дата публикации

Method and Device for Acquiring the Oil Temperature in an Internal Combustion Engine

Номер: US20200063667A1
Принадлежит: CPT Group GmbH

Various embodiments include a method for determining the temperature of an engine oil in an internal combustion engine comprising: acquiring a value of a parameter characterizing a current operating point of the internal combustion engine; and calculating the temperature of the engine oil using an oil temperature model. The oil temperature model depends at least in part on dilution of the engine oil caused by different components in the engine oil and accounts for modified heating behavior of the engine oil based on the dilution. 1. A method for determining the temperature of an engine oil in an internal combustion engine , the method comprising:acquiring a value of a parameter characterizing a current operating point of the internal combustion engine;calculating the temperature of the engine oil using an oil temperature model;wherein the oil temperature model depends at least in part on dilution of the engine oil caused by different components in the engine oil and accounts for modified heating behavior of the engine oil based on the dilution.2. The method as claimed in claim 1 , further comprising determining the different components using an oil-dilution model.3. The method as claimed in claim 2 , further comprising:determining the input masses for individual components; andassigning a boiling characteristic curve for each input mass to a value memory of a control device;wherein the control device controls operation of the internal combustion engine based on the modelled oil temperature.4. The method as claimed in claim 3 , further comprising acquiring a correction factor for the modelled oil temperature towards low values claim 3 , using the boiling characteristic curves.5. The method as claimed in claim 1 , further comprising including at least one variable selected from the group consisting of: coolant temperature claim 1 , air mass flow claim 1 , intake manifold pressure claim 1 , and air/fuel ratio as a parameter characterizing a current operating point of ...

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27-02-2020 дата публикации

Monitoring Deviations Occurring In The Valve Drive Of An Internal Combustion Engine, And Electronic Engine Control Units For Executing Such Methods

Номер: US20200063674A1
Принадлежит: CPT Group GmbH

Various embodiments include a method for detecting deviations occurring in the valve drive of an internal combustion engine comprising: measuring dynamic pressure oscillations of intake air in an air intake tract of respective internal combustion engine during operation; calculating an inlet valve stroke phase difference and/or an outlet valve stroke phase difference based on the measured dynamic pressure oscillation; calculating a valve stroke phase deviation value with respect to a valve stroke phase reference value based on the calculated phase difference; and calculating a first valve drive deviation value based on the valve stroke phase deviation value. 1. A method for detecting deviations occurring in the valve drive of an internal combustion engine , the method comprising:measuring dynamic pressure oscillations of intake air in an air intake tract of respective internal combustion engine during operation;calculating an inlet valve stroke phase difference and/or an outlet valve stroke phase difference based on the measured dynamic pressure oscillation;calculating a valve stroke phase deviation value with respect to a valve stroke phase reference value based on the calculated phase difference; andcalculating a first valve drive deviation value based on the valve stroke phase deviation value.2. The method as claimed in claim 1 , further comprising:measuring an inlet camshaft angle difference and/or an outlet camshaft angle difference using a crankshaft position sensor and an inlet camshaft position sensor and/or outlet camshaft position sensor during operation;calculating a second valve drive deviation value based on the measured angle difference;comparing the first and the second valve drive deviation value with one another to perform a reciprocal plausibility check; andcalculating a valve drive deviation comparison value.3. The method as claimed in claim 2 , wherein the first and/or the second valve drive deviation value is identified as plausible only if the ...

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27-02-2020 дата публикации

DIAGNOSIS DEVICE AND DIAGNOSIS METHOD FOR INTERNAL COMBUSTION ENGINE, AND CONTROL DEVICE AND CONTROL METHOD FOR INTERNAL COMBUSTION ENGINE

Номер: US20200063678A1
Принадлежит: Yanmar Co., Ltd.

A diagnosis device for a multi-cylinder internal combustion engine having an exhaust turbocharger, the device configured to diagnose a fuel combustion state in each one of cylinders in the internal combustion engine. The diagnosis device includes: a rotational speed detector configured to output a signal corresponding to a rotational speed of the exhaust turbocharger or a signal correlated to fluctuation in the rotational speed of the exhaust turbocharger, and a fuel combustion state diagnosis unit configured to diagnose unevenness in the fuel combustion states of the cylinders through a frequency analysis involving a fast Fourier transformation of a frequency characteristic of a signal output from the rotational speed detector. 1. A diagnosis device for a multi-cylinder internal combustion engine having one or more exhaust turbochargers , the device configured to diagnose a fuel combustion state in each one of cylinders in the internal combustion engine , the diagnosis device comprising:a rotational speed detector configured to output a signal corresponding to a rotational speed of at least one of the one or more exhaust turbochargers or a signal correlated to fluctuation in the rotational speed of at least one of the one or more exhaust turbochargers; anda fuel combustion state diagnosis unit configured to diagnose unevenness in fuel combustion states of the cylinders through a frequency analysis involving a fast Fourier transformation of a frequency characteristic of a signal output from the rotational speed detector.2. The diagnosis device for the internal combustion engine according to claim 1 , wherein the fuel combustion state diagnosis unit is configured to:determine an operating point corresponding to a complex plane through the frequency analysis involving the fast Fourier transformation, andbased on an angle of a vector ranging from an origin of the complex plane to the operating point with respect to a coordinate axis of the complex plane and a length of ...

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