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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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Применить Всего найдено 6685. Отображено 100.
12-01-2012 дата публикации

Horizontal synchronization generation circuit, video signal processing lsi, and video system

Номер: US20120008046A1
Принадлежит: Panasonic Corp

A horizontal synchronization generation circuit, which generates a horizontal synchronizing signal from a given reference clock, enables accurate reproduction of a preferable frame frequency with a simple configuration. A clock counter counts the reference clock. A comparator generates the horizontal synchronizing signal at a time when a count value output from the clock counter becomes equal to a synchronization counter value. A synchronization counter value output section generates the synchronization counter value by performing addition/subtraction in each of scanning lines based on a basic counter value.

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26-01-2012 дата публикации

Dynamic Illumination Compensation For Background Subtraction

Номер: US20120019728A1
Автор: Darnell Janssen Moore
Принадлежит: Texas Instruments Inc

A method of processing a video sequence in a computer vision system is provided that includes receiving a frame of the video sequence, computing a gain compensation factor for a tile in the frame as an average of differences between background pixels in the tile and corresponding pixels in a background model, computing a first difference between a pixel in the tile and a sum of a corresponding pixel in the background model and the gain compensation factor, and setting a location in a foreground mask corresponding to the pixel based on the first difference.

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02-02-2012 дата публикации

Method and apparatus for photographing a panoramic image

Номер: US20120026283A1
Принадлежит: SAMSUNG ELECTRONICS CO LTD

A method and apparatus for photographing a panoramic image. The method includes checking a Motion Vector (MV) of an image captured through an imaging device, selecting an image to be included the panoramic image based on the MV, detecting regions to be included in the panoramic image from the selected image, and generating the panoramic image including the detected regions.

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29-03-2012 дата публикации

System and method for frame rate conversion

Номер: US20120075524A1
Автор: Yeong Taeg Kim
Принадлежит: SAMSUNG ELECTRONICS CO LTD

A system and method for frame rate conversion are disclosed. In one embodiment, the method comprises receiving, at the first device from a second device, input video having a first frame rate, receiving, at the first device from the second device, motion vector information associated with the input video, determining, at the first device, output video having a second frame rate different from the first frame rate, wherein the output video is based on the input video and the motion vector information, and displaying the output video.

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05-04-2012 дата публикации

Method for flicker detection in image signal

Номер: US20120081571A1
Принадлежит: Individual

The present invention provides an effective flicker detection method performing a motion compensation. The present invention includes the steps of: calculating a luminance difference between neighboring pixels; summing up the luminance difference in a specific direction if the difference is greater than a threshold value; performing a motion estimation by using a sum calculated through step (b) to thereby calculate a motion displacement; performing a motion compensation to a current frame data by using the motion displacement; calculating a difference between a previous frame data and the compensated current frame data; and detecting the flicker by using the difference calculated in step (e).

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19-04-2012 дата публикации

Image processing apparatus and image processing method

Номер: US20120093483A1
Автор: Kazuhiro Takahashi
Принадлежит: Canon Inc

A CPU divides a moving image file at a divided frame position, thereby generating a first divided moving image file including a first frame and another divided moving image file. The CPU detects a frame position where an object appears for the first time in the reproduction order from the other divided moving image file, and generates a file that describes the detected position as a new face information management file. The CPU controls a recording/reproduction control circuit to store the generated new face information management file in a recording medium in association with the other divided moving image file.

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10-05-2012 дата публикации

Image capturing apparatus, method, and recording medium capable of continuously capturing object

Номер: US20120113267A1
Автор: Yoshiki Ishige
Принадлежит: Casio Computer Co Ltd

An image capturing apparatus includes an image capturing unit, a designating unit configured to designate a main-area or a position to which a moving object is to reach, in each captured image captured by the image capturing unit, an image capturing control unit configured to control the image capturing unit to continuously capture the moving object at a predetermined frame rate, a position specifying unit configured to specify a position of the moving object in the image captured by the image capturing unit, and a frame rate control unit configured to control the predetermined frame rate, based on the specified position of the moving object, and either the main-area or position.

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24-05-2012 дата публикации

Video processor device and video processing method

Номер: US20120127369A1
Автор: Kenichi Shimada
Принадлежит: Renesas Electronics Corp

A video processor and method for swiftly detecting swaps occurring between links during transmission of images by the dual-link system. A first image combiner unit combines an image D 1 of a first link as an odd-numbered image, with an image of a second link, to generate a first combination image. A second image combiner unit combines an image of a second link as an odd-numbered image, with the image of the first link to generate a second combination image. An edge detector unit detects the horizontal edge of the first combination image and the second combination image. A judgment unit compares the number of triple edges in the first combination image and second combination image, and judges the combination image having more triple edges as the error image. The triple edges contain three consecutive edges along the horizontal direction, and the rising edges and falling edges are arrayed alternately.

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09-08-2012 дата публикации

Image processing apparatus and method

Номер: US20120200732A1
Автор: Yoshitaka Takeuchi
Принадлежит: Canon Inc

A first white balance correction amount is calculated according to similarity between image data acquired by an image pickup unit and past image data acquired in the past, and a first white balance correction is performed on the image data according to the first white balance correction amount. A luminance correction amount and a color correction amount are calculated according to similarity between the corrected image data and the past image data corrected in the first white balance correction. Using one of them, the first white balance correction amount is corrected thereby to obtain a second white balance correction amount. According to the obtained correction amount, a second white balance correction, a luminance correction, and a color correction are performed on the image data acquired by the image pickup unit.

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20-09-2012 дата публикации

Video signal processing circuit and method applicable thereto

Номер: US20120236202A1
Автор: Hsin-I Lin
Принадлежит: NOVATEK MICROELECTRONICS CORP

A video signal processing circuit includes: a composite sync signal generation circuit, generating a composite sync signal from a received composite video signal; a signal-noise-ratio calculation unit, generating a SNR of the composite video signal; a timing generation unit, generating a gated window based on the SNR; and a vertical sync signal separation unit, generating a vertical sync signal from the composite sync signal based on the SNR and the gated window, and dynamically adjusting a detection criterion on the vertical sync signal.

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15-11-2012 дата публикации

Image pickup apparatus that performs image pickup using rolling shutter method, method of controlling the same, and storage medium

Номер: US20120287295A1
Автор: Makoto Oota
Принадлежит: Canon Inc

An image pickup apparatus capable of reducing camera-shake blur and rolling-caused distortion of image data obtained by shooting without including invalid data. An object obtained by shooting is stored in a memory area as first image data, and data having a smaller data size than the first image data is acquired as second image data by clipping from the memory area. A clipping position which enables correction of camera-shake blur is calculated according to an amount of movement due to a camera shake. Range information indicative of a range in the memory area and shift amounts used for correcting rolling-caused distortion are calculated. Rolling-caused distortion of the second image data is corrected based on the calculated shift amounts.

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15-11-2012 дата публикации

Image processing apparatus, image processing method, and motion detection system

Номер: US20120288144A1
Принадлежит: Toshiba Corp

According to one embodiment, an image processing apparatus includes an integrator and a motion determination unit. The motion determination unit determines movement of an object. The integrator integrates information on a first frame in a unit domain in the image of each frame, and integrates information on a second frame while inverting a sign of a signal level in the integration of the first frame. The motion determination unit makes the motion determination in the unit domain according to the integration result of the integrator.

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24-01-2013 дата публикации

Cadence detection for interlaced video based on temporal regularity

Номер: US20130022283A1
Автор: Joan Bruna Estrach
Принадлежит: Zoran France SA

A method is proposed for analyzing an interlaced video signal including a first sequence of fields. A temporal regularity estimation process is applied to the first sequence of fields to compute a first metric. Inputs of the temporal regularity estimation process include pixel values from at least two fields having respective ranks differing by more than one in the sequence. The same temporal regularity estimation process is applied to second and third sequences of fields to compute second and third metrics. The second sequence is derived from the first sequence by swapping fields having ranks of the form 2k and 2k+1 for any integer k, while the third sequence is derived from the first sequence by swapping fields having ranks of the form 2k−1 and 2k. The first, second and third metrics are compared in a determination of the time arrangement of the fields in the first sequence.

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04-04-2013 дата публикации

VIDEO PROCESSING METHOD, VIDEO PROCESSING CIRCUIT, LIQUID CRYSTAL DISPLAY, AND ELECTRONIC APPARATUS

Номер: US20130083244A1
Принадлежит: SEIKO EPSON CORPORATION

A video processing circuit detects a risk boundary, which a portion of the boundary between a dark pixel and a bright pixel in an image represented by a video signal Vid-in, and is determined by a tilt azimuth of liquid crystal molecules, from the boundary, and corrects a video signal corresponding to at least one of the dark pixel and the bright pixel which is contiguous to the detected risk boundary in at least one field of a plurality of fields constituting one frame such that a period in which the risk boundary is present in one frame period is shortened. 1. A video processing method which corrects an input video signal specifying a voltage to be applied to a liquid crystal element for each pixel and defines the voltage to be applied to the liquid crystal element on the basis of the corrected video signal , the method comprising:a risk boundary detection step of detecting a risk boundary which is a portion of the boundary between a first pixel whose applied voltage specified by an input video signal falls below a first voltage and a second pixel whose applied voltage exceeds a second voltage higher than the first voltage, and is determined by a tilt azimuth of the liquid crystal; anda correction step of correcting a video signal, which specifies a voltage to be applied to a liquid crystal element corresponding to at least one of the first and second pixels contiguous to the risk boundary detected in the risk boundary detection step, in at least one field of a plurality of fields constituting one frame such that a period in which the risk boundary is present in one frame period is shortened.2. The method according to claim 1 ,wherein, in the correction step, a video signal which specifies a voltage to be applied to a liquid crystal element corresponding to the first pixel contiguous to the risk boundary detected in the risk boundary detection step or liquid crystal elements corresponding to r (where r is an integer of 2 or more) continuous first pixels on an ...

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11-04-2013 дата публикации

Method of Processing Moving Picture and Apparatus Thereof

Номер: US20130088645A1
Принадлежит: ENSWERS CO., LTD.

A method of processing moving picture and an apparatus thereof are disclosed. A method of processing a moving picture comprising: calculating a color distribution vector for each of plural sub-frames which are generated by dividing a frame of the moving picture; generating a first order differential of the color distribution vector based on the color distribution vector; generating a second order differential of the color distribution vector based on the first order differential of the color distribution vector; and generating a feature vector of the frame based on the color distribution vector, the first order differential of the color distribution vector and the second order differential of the color distribution vector, is provided. The moving picture processing method can provide an efficient mean to determine commonality between moving pictures by extracting a feature from a frame of the moving pictures. 1. A method of processing a moving picture on an apparatus including at least one computer processor for executing commands that direct operations of the apparatus and a memory operatively coupled to the at least one processor , the memory storing code operable when executed with the at least one processor , the method comprising:calculating a color distribution vector for each of a plurality of sub-frames generated by dividing a frame of the moving picture;generating a first order differential of the color distribution vector based on the color distribution vector;generating a second order differential of the color distribution vector based on the first order differential of the color distribution vector; and generating a feature vector of the frame based on the color distribution vector, the first order differential of the color distribution vector and the second order differential of the color distribution vector.2. The method of claim 1 , wherein the generating of a frame feature vector comprises selecting a plurality of components claim 1 , as components ...

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18-04-2013 дата публикации

Adaptive windowing in motion detector for deinterlacer

Номер: US20130093951A1
Автор: Monica Man Kay Tang
Принадлежит: CSR Technology Inc

A method of determining a motion value for a missing pixel in an interlaced video field using an adaptive window. The method includes computing a first mean absolute difference (MAD) value for a pixel based on a 1×5 window, computing a second MAD value for the pixel using a 3×5 window, and selectively blending the first and second MAD values to form a resultant motion value.

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25-04-2013 дата публикации

METHOD FOR MEASURING VIDEO QUALITY USING A REFERENCE, AND APPARATUS FOR MEASURING VIDEO QUALITY USING A REFERENCE

Номер: US20130100350A1
Принадлежит: THOMSON LICENSING

The purpose of an objective video quality evaluation is to automatically assess the quality of video sequences in agreement with human quality perception. The invention addresses the effects of the introduction of a temporal dimension by focusing on the temporal evolutions of spatial distortions, since it has been found that a spatial quality variation cannot be evaluated by simple subtraction of the spatial quality of neighbouring frames. An improved method for estimating perceived video quality comprises steps of calculating a first similarity map between adjacent frames of a current sequence, calculating a second similarity map between the corresponding reference frames, and calculating (smg) a third similarity map, which provides a numerical quality value. 1. A method for measuring video quality of a sequence of distorted video pictures , wherein the respective video pictures are also available as undistorted video pictures , comprising steps ofdividing the pictures into blocks of equal size;{'sub': 'sim,1', 'o': {'@ostyle': 'single', 'CM'}, 'generating a first similarity map, wherein the blocks of a distorted picture f and the corresponding collocated blocks of a temporally neighboring distorted picture f′ are input to a first similarity function f(f,f′)= (f,f′) that outputs a first similarity map;'}{'sub': 0', '0', 'sim,1', '0', '0', '0', '0, 'o': {'@ostyle': 'single', 'CM'}, 'generating a second similarity map, wherein the blocks of an undistorted picture fand the corresponding collocated blocks of a temporally neighboring undistorted picture f′are input to the first similarity function f(f,f′)= (f,f′) that outputs a second similarity map;'}{'sub': sim,2', 'variation', 'sim', '0', '0, 'sup': '2', 'o': [{'@ostyle': 'single', 'CM'}, {'@ostyle': 'single', 'CM'}], 'calculating the similarity between the first similarity map and the second similarity map, wherein a second similarity function f(X,Y) is used according to VQM=f( (f,f′), (f,f′)) and wherein a single ...

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02-05-2013 дата публикации

Motion vector computing device and motion vector computing method

Номер: US20130107124A1

A motion vector computing device according to one embodiment includes: a difference computing unit that computes inter-frame temporal difference value It, uses horizontal direction inter-pixel difference value Ix and vertical direction inter-pixel difference value Iy in a same frame, the current frame signal and the different frame signals when the pixel moves for a small-time, a variance matrix generating unit computes the variances of the gradient in the horizontal direction, in the vertical direction and in the temporal direction of the luminance value on the basis of the difference values Ix, Iy and It, a coefficient computing unit computes a coefficient of a flat plane formula by calculating a formula for giving a minimum with regard to the square error of the flat plane formula approximating the distribution of luminance gradients of the pixel and a vector computing unit computes the motion vector uses the coefficient.

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30-05-2013 дата публикации

Method for searching small moving object in dynamic image

Номер: US20130135524A1
Принадлежит: NOVATEK MICROELECTRONICS CORP

A method for searching small moving object is used to insert an inserting image frame between adjacent two image frames. An inserting region is selected in the inserting image frame. Multiple extending directions passing through the inserting region are selected. Each of the extending directions extends and intersects with the two image frames to analyze out which one of the extending directions satisfies the condition of movement by the same object, and obtain at least one motion vector corresponding to the extending direction. A globe motion vector between the two image frames is obtained. A motion-vector difference between the at least one motion vector and the globe motion vector is compared to judge whether greater than a setting value. If the motion vector difference is greater than the setting value then the first local-region image data and the second local-region image data are treated as a small moving object.

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30-05-2013 дата публикации

DIFFERENTIAL INTERFERENCE CONTRAST SERIAL TIME ENCODED AMPLIFIED MICROSCOPY

Номер: US20130135529A1

We describe methods and apparatus for high-speed high-contrast imaging one-, two- and three-dimensional imaging enabled by differential interference contrast time encoded amplified microscopy of transparent media without the need for chemical staining, that are suitable for a broad range of applications from semiconductor process monitoring to blood screening. Our methods and apparatus build on a unique combination of serial time-encoded amplified microscopy (STEAM) and differential interference contrast (DIC) microscopy. These methods and apparatus are ideally suited for identification of rare diseased cells in a large population of healthy cells and have the potential to revolutionize blood analysis and pathology including identification of cancer cells, such as Circulating Tumor Cells (CTC) in early stage disease. 1. An apparatus for optical imaging , comprising:a broadband pulsed laser light source;a spatial disperser stage operably coupled to the light source producing a polarized spatially dispersed beam;a Nomarski prism operably coupled to the spatial disperser stage;an objective lens configured to direct a spatially dispersed beam from the Nomarski prism to a specimen;a mirror;a temporal disperser stage configured to map a back-reflected spectrum into a temporal waveform;an optical detector; anda digitizer.2. An apparatus as recited in claim 1 , wherein said broadband pulsed laser source comprises:a mode-locked laser;a highly non-linear fiber;a bandpass filter; anda fiber collimator.3. An apparatus as recited in claim 1 , wherein said spatial disperser stage comprises:a half-wave plate;a quarter-wave plate;a pair of diffraction gratings;a pair of vertical telescoping lenses;a pair of horizontal telescoping lenses;a half wave plate; anda polarizer.4. An apparatus as recited in claim 1 , the objective lens further comprising:a cylindrical lens operably coupled to the Nomarski prism; anda spherical lens operably coupled with an objective lens.5. An apparatus as ...

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20-06-2013 дата публикации

Method to Process Image Sequences with Sub-Pixel Displacements

Номер: US20130155327A1
Принадлежит:

A method for reducing or removing sub-pixel displacements between images in a sequence of images is disclosed. In the first step, a set of images is acquired using a camera system. In the second step, pairwise distances are computed between every pair of images of the set of images. In the third step, the pairwise distances having the smallest values are identified. In the fourth step, “lucky” image pairs are selected from the image pairs having the smallest displacement. These “lucky” image pairs will have a substantially reduced sub-pixel jitter. In an alternative embodiment, after performing the first step and before performing the second step, the set of images are processed to remove whole pixel displacements between the images in the set of images. 1. A method of generating a set of image pairs based on a visual scene , comprising the steps of:acquiring a plurality of images based on the visual scene;generating a plurality of measurements based on the plurality of images, wherein each measurement of the plurality of measurements is associated with two images selected from the plurality of images;selecting a subset of measurements from the plurality of measurements; andgenerating the set of image pairs based on the two images associated with each measurement of the subset of measurements.2. The method of claim 1 , wherein the plurality of images is acquired using a moving camera.3. The method of claim 1 , wherein the plurality of measurements is generated based on a function.4. The method of claim 3 , wherein the function is selected from the group consisting of a similarity metric and a dissimilarity metric.5. The method of claim 3 , wherein the function comprises a distance metric.6. The method of claim 1 , wherein the step of acquiring a plurality of images based on the visual scene comprises a step of removing whole pixel displacements from the plurality of images.7. The method of claim 1 , wherein the set of image pairs is a set of lucky image pairs.8. The ...

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27-06-2013 дата публикации

DISPLAY APPARATUS AND SIGNAL PROCESSING MODULE FOR RECEIVING BROADCASTING AND DEVICE AND METHOD FOR RECEIVING BROADCASTING

Номер: US20130162908A1
Принадлежит: SAMSUNG ELECTRONICS CO., LTD.

A display apparatus for receiving broadcasting includes a display unit configured to display an image thereon, a cover which partially covers the display unit, at least one signal connector which is configured to connect to a portable signal processing module that is located outside the cover and processes a signal to be displayed by the display unit, and receives the signal processed by the signal processing module, and a timing controller (T-con) configured to control a display timing of the signal received by the at least one signal connector. 1. A display apparatus for receiving broadcasting comprising:a display unit configured to display an image;a cover which partially covers the display unit;at least one signal connector which is configured to connect to a portable signal processing module that is located outside the cover and processes a signal to be displayed by the display unit, and receives the signal processed by the signal processing module; anda timing controller (T-con) configured to control a display timing of the signal received by the at least one signal connector.2. The display apparatus according to claim 1 , further comprising a first power connector which is configured to receive power to be used by the display apparatus from the portable signal processing module.3. The display apparatus according to claim 1 , further comprising at least one second power connector which is configured to supply power to the portable signal processing module.4. The display apparatus according to claim 1 , wherein the at least one signal connector comprises a single cable and is configured to connect to either the display apparatus or the portable signal processing module.5. The display apparatus according to claim 2 , wherein the at least one signal connector and the first power connector each comprise a single cable claim 2 , and are configured to connect to either the display apparatus or the portable signal processing module.6. The display apparatus according ...

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11-07-2013 дата публикации

PROJECTOR, APPARATUS AND METHOD FOR DRIVING OPTICAL SCANNER THEREOF

Номер: US20130176490A1
Принадлежит:

A projector and an apparatus and method for driving an optical scanner are disclosed. A sensing signal processor receives a sensing signal that represents sensing of operation of the optical scanner and generates a horizontal scan signal corresponding to a horizontal frequency of the optical scanner on the basis of the received sensing signal. A driving signal generator generates at least one of a horizontal reference signal including line information that indicates the number of horizontal lines of a horizontal driving signal of the optical scanner, a reference clock signal and a scanner driving signal for driving the optical scanner on the basis of the generated horizontal scan signal. 1. A projector including an optical scanner scanning an image on a screen , the projector comprising:a video processor for receiving video data and a vertical synchronization signal of the video data; anda scanner driver for controlling the number of horizontal lines of a horizontal driving signal of the optical scanner to be varied on the basis of the received vertical synchronization signal.2. The projector according to claim 1 , wherein the scanner driver generates a horizontal scan signal on the basis of a sensing signal received from the optical scanner and generates at least one of a horizontal reference signal including line information that indicates the number of horizontal lines of the horizontal driving signal of the optical scanner claim 1 , a reference clock signal and a scanner driving signal for driving the optical scanner on the basis of the generated horizontal scan signal.3. The projector according to claim 1 , wherein the video processor generates a read enable signal for controlling output timing of the received video data on the basis of the horizontal reference signal.4. The projector according to claim 3 , further comprising a laser source for emitting a beam for displaying the video data; anda laser driver for generating a laser driving signal for driving the ...

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08-08-2013 дата публикации

Method and System for Adaptive Temporal Interpolation Filtering for Motion Compensation

Номер: US20130201405A1
Автор: CHEN Xuemin
Принадлежит: BROADCOM CORPORATION

Certain aspects of a method and system for adaptive temporal interpolation filtering for motion compensation may include computing a plurality of weights for adaptively adjusting one or more parameters of a plurality of linear filters utilized for motion compensation. One or more motion compensated output pictures may be generated based on vector median filtering a plurality of linear filtered output pictures generated by the plurality of linear filters. In instances where two frames are utilized for motion estimation of a video sequence, a motion compensated picture of a previous frame and a motion compensated picture of a current frame may be combined to adaptively compute the subsequent weights. In instances where three or more frames are utilized for motion estimation of a video sequence, the generated one or more motion compensated output pictures may be combined with an extracted desired picture from the video sequence to adaptively compute the subsequent weights. 1. A method for signal processing , the method comprising:computing a plurality of weights for adaptively adjusting one or more parameters of a plurality of linear filters utilized for motion compensation in a video enabled device;generating one or more motion compensated output pictures based on vector median filtering a plurality of linear filtered output pictures generated by said plurality of linear filters, wherein said filtering comprises two or more stages of finite impulse response (FIR) median hybrid (FMH) filters; andadaptively computing a plurality of subsequent weights utilizing said generated one or more motion compensated output pictures.2. The method according to claim 1 , further comprising determining whether two frames are utilized for motion estimation of a video sequence to generate said one or more motion compensated output pictures.3. The method according to claim 2 , further comprising generating an error signal based on combining a motion compensated picture of a previous ...

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12-09-2013 дата публикации

MOTION VECTOR DETECTION DEVICE, MOTION VECTOR DETECTION METHOD, FRAME INTERPOLATION DEVICE, AND FRAME INTERPOLATION METHOD

Номер: US20130235274A1
Принадлежит: Mitsubishi Electric Corporation

A motion vector detection device includes a motion estimator which detects block motion vectors (MV) and a motion vector densifier (). The motion vector densifier () further comprises a first motion vector generator (), a second motion vector generator (-), and a motion vector corrector (-). From each block, the first motion vector generator () generates sub-blocks on a first layer, and generates a motion vector (MV) for each sub-block on the first layer. In each layer from a second layer through an N-th layer, the second motion vector generator (-) generates a motion vector (MV, where k= to N) for each sub-block in the layer. The motion vector corrector (-) corrects the motion vectors of the sub-blocks in layers subject to correction among the first through N-th layers. 1. A motion vector detection device that detects motion in a series of frames constituting a moving image , comprising:a motion estimator for dividing a frame of interest in the series of frames into a plurality of blocks, and for, taking a frame temporally differing from the frame of interest in the series of frames as a reference frame and taking each of the blocks as a block of interest, searching for a reference block being most highly correlated with the block of interest in the reference frame, and detecting a displacement in a spatial direction between the block of interest and the reference block, thereby detecting one or more motion vectors for the block of interest; anda motion vector densifier for, using the plurality of blocks as a plurality of sub-blocks on a zeroth layer, hierarchically dividing each of the sub-blocks on the zeroth layer to thereby generate a plurality of sub-blocks on a plurality of layers including a first layer to an N-th layer (N being an integer equal to or greater than 2) and generating a motion vector for each one of the sub-blocks in each layer from the first to the N-th layer; whereinthe motion vector densifier includes:a motion vector generator for generating ...

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12-09-2013 дата публикации

IMAGE PROCESSING APPARATUS, FOCUS DETECTION APPARATUS, AND NON-TRANSITORY COMPUTER-READABLE STORAGE MEDIUM

Номер: US20130235276A1
Автор: OGAWA Takeshi
Принадлежит: CANON KABUSHIKI KAISHA

An image processing apparatus processes an image signal from an image pickup element including a plurality of pixels for one microlens, and the image processing apparatus includes a saturation detector configured to detect whether an output value of each of the plurality of pixels reaches a saturation level, and a saturation corrector configured to correct an output value of a saturation pixel that reaches the saturation level and an output value of an adjacent pixel that shares the same microlens with the saturation pixel. 1. An image processing apparatus that processes an image signal from an image pickup element including a plurality of pixels for one microlens , the image processing apparatus comprising:a saturation detector configured to detect whether an output value of each of the plurality of pixels reaches a saturation level; anda saturation corrector configured to correct an output value of a saturation pixel that reaches the saturation level and an output value of an adjacent pixel that shares the same microlens with the saturation pixel.2. The image processing apparatus according to claim 1 , wherein the saturation corrector corrects the output value of the saturation pixel and the output value of the adjacent pixel so that an added value of the output value of the saturation pixel and the output value of the adjacent pixel is maintained.3. The image processing apparatus according to claim 1 , wherein the saturation corrector corrects the output value of the saturation pixel and the output value of the adjacent pixel using an output value of a same color pixel when an output value of the same color pixel that corresponds to a microlens different from the microlens shared with the saturation pixel and the adjacent pixel does not reach the saturation level.4. The image processing apparatus according to claim 1 , wherein the saturation corrector corrects the output value of the saturation pixel and the output value of the adjacent pixel using an output ...

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19-09-2013 дата публикации

SIGNAL PROCESSING DEVICE, LIQUID CRYSTAL APPARATUS, ELECTRONIC EQUIPMENT, AND SIGNAL PROCESSING METHOD

Номер: US20130242194A1
Принадлежит: SEIKO EPSON CORPORATION

A signal processing device which is used in a liquid crystal apparatus, includes a detection portion that detects a boundary between a first pixel correlated with a first signal for applying a first voltage lower than a first reference voltage and a second pixel correlated with a second signal for applying a second voltage higher than a second reference voltage on the basis of signals for controlling voltages applied to pixels, and a correction portion that corrects a signal correlated with M pixels including the first pixel to a third signal for applying a third voltage which is higher than the first voltage and lower than the second voltage in a correction period, wherein the correction portion varies M in the correction period. 1. A signal processing device which is used in a liquid crystal apparatus including a plurality of pixels , comprising:a detection portion that detects a boundary between a first pixel correlated with a first signal for applying a first voltage lower than a first reference voltage and a second pixel correlated with a second signal for applying a second voltage higher than a second reference voltage on the basis of a signal for controlling a voltage applied to each of the plurality of pixels; anda correction portion that corrects a signal correlated with M (where M is an integer equal to or more than 1) pixels including the first pixel to a third signal for applying a third voltage which is higher than the first voltage and lower than the second voltage in a correction period,wherein the correction portion varies M in the correction period.2. The signal processing device according to claim 1 , wherein the correction portion corrects the signal correlated with the M pixels including the first pixels to the third signal for applying the third voltage which is higher than the first voltage and lower than the second voltage in a correction period when the first voltage is lower than a third reference voltage which is lower than the first ...

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03-10-2013 дата публикации

Video Source Correction

Номер: US20130258193A1
Автор: Velasco Adolfo
Принадлежит: Crestron Electronics, Inc.

An input card of video switcher includes a detection block for detecting errors in the timing signals of a digital video signal within a range. For timing signals with errors that fall within the range, the input card implements a correction block to correct the signals to an expected resolution. For timing signals with errors that fall out of the range, the input card does implement the correction block and passes the raw timing signal through. 1. A video receiver configured for receiving a digital video signal comprising a vertical synchronization signal , a horizontal synchronization signal and a data enable signal and comprising: (i) measuring the actual horizontal pixels, the actual vertical scan lines, the measured active horizontal pixels and the measured active vertical scan lines,', '(ii) estimating an expected total horizontal pixels, an expected total vertical scan lines, an expected active horizontal pixels and an expected active vertical scan lines,', '(iii) determining whether the magnitude of the difference between the expected total vertical scan lines and the measured total vertical scan lines falls within a first range defined by a first threshold and a second threshold,', '(iv) determining whether the magnitude of the difference between the expected total horizontal pixels and the measured total horizontal pixels falls within a second range defined by a third threshold and a fourth threshold,', '(v) determining whether the magnitude of the difference between the expected active horizontal pixels and the measured active horizontal pixels falls within a third range defined by a fifth threshold and a sixth threshold, and', '(vi) determining whether the magnitude of the difference between the expected active vertical scan lines and measured active vertical scan lines falls within a fourth range defined by a seventh threshold and an eighth threshold;, '(a) a detection block configured for(b) a vertical synchronization correction block configured for ...

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03-10-2013 дата публикации

SYSTEM AND METHOD FOR SHOT CHANGE DETECTION IN A VIDEO SEQUENCE

Номер: US20130258202A1
Принадлежит:

A computer implemented method for automatically identifying shot changes in a video sequence in real-time or near-real-time is disclosed. Optical flow energy change differences between frames, sum-of-square differences between optical-flow-compensated frames, and hue histogram changes within frames are analyzed and stored in frame buffers. A feature vector formed from a combination of these measurements is compared to a feature vector formed from thresholds based on tunable recall and precision to declare the presence or absence of a shot change. 1. A method , comprising:receiving, using a processor, a plurality of frames; calculating a first optical flow field between a current frame and a previous frame and a second optical flow field between the previous frame and a previous third frame;', 'comparing the first optical flow field to the second optical flow field with respect to a direction and a magnitude of each pixel to arrive at a similarity scalar value for each pixel; and', 'calculating a mean value of each of the similarity scalar values as the OFEDM; and, 'determining an image similarity metric based on at least one pair of frames of the plurality of frames, wherein the similarity metric comprises determining an optical flow energy change difference measure (OFEDM) between optical flow fields comprisingdetecting a shot change in the plurality of frames upon the mean scalar value exceeding a user-supplied threshold.2. The method of claim 1 , wherein the image similarity metric further comprises:a sum-of-square difference measure (SSDM) between optical-flow-compensated frames anda hue histogram energy change differences measure (HHEDM) from histograms of hue channel values.3. The method of claim 2 , wherein the SSDM is constructed with at least one of sum-of-square-differences (SSD) claim 2 , normalized cross correlation claim 2 , sum-of-absolute differences claim 2 , and sum of hamming distances.4. The method of claim 2 , wherein the SSDM is determined by: ...

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10-10-2013 дата публикации

IMAGE PROCESSING UNIT, IMAGE PROCESSING METHOD, DISPLAY AND ELECTRONIC APPARATUS

Номер: US20130265493A1
Принадлежит: SONY CORPORATION

There are provided an image processing unit, an image processing method, a display, and an electronic apparatus that are capable of enhancing image quality. The image processing unit includes: a region acquiring section determining a region shape of a picture region, based on a predetermined number of frame pictures of a series of frame pictures; and an image processing section performing predetermined image processing based on the region shape. 1. An image processing unit comprising:a region acquiring section determining a region shape of a picture region, based on a predetermined number of frame pictures of a series of frame pictures; andan image processing section performing predetermined image processing based on the region shape.2. The image processing unit according to claim 1 , wherein the region acquiring section samples luminance information at a plurality of pixel coordinates for each of the predetermined number of frame pictures claim 1 , and determines the region shape based on the luminance information.3. The image processing unit according to claim 2 , wherein the plurality of pixel coordinates is coordinates of a part of all pixels claim 2 , the all pixels configuring each frame picture.4. The image processing unit according to claim 3 , wherein the plurality of pixel coordinates is fixed in the predetermined number of frame pictures.5. The image processing unit according to claim 3 , wherein the plurality of pixel coordinates in one of the frame pictures is different from the plurality of pixel coordinates in one of the remaining frame pictures.6. The image processing unit according to claim 3 , wherein the region acquiring section determines a tentative region shape of a picture region claim 3 , based on each of the predetermined number of frame pictures claim 3 , and determines the region shape based on a plurality of the tentative region shapes.7. The image processing unit according to claim 4 , wherein the region acquiring section determines ...

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17-10-2013 дата публикации

DOMINANT MOTION ESTIMATION FOR IMAGE SEQUENCE PROCESSING

Номер: US20130271666A1
Принадлежит:

Herein is described a method of estimating dominant motion between a current frame n and another frame m of an image sequence having a plurality of frames, the method comprising generating integral projections of the images and using gradients of those projections and using differences between the projections. The input may be any sequence of image frames from an image source, such as a video camera, an IR or X-ray imagery, radar, or from a storage medium such as computer disk memory, video tape or a computer graphics generator. 120-. (canceled)21. A method of estimating a dominant motion between a current frame n and another frame m of an image sequence having a plurality of frames , each of the frames having a plurality of pixels , the method comprising:generating integral projections of the current frame n and the other frame m; andestimating the dominant motion with a processor by matching the generated integral projections, the dominant motion being a motion associated with most of the pixels of current frame n.22. The method of claim 21 , wherein matching the generated integral projections includes directly matching the generated integral projections.23. The method of claim 22 , wherein the direct matching is performed using a coarse version of the current frame n and other frame m.24. The method of claim 22 , wherein matching the generated integral projections further includes refining the direct matching of the generated integral projections using gradients of the generated integral projections.25. The method of claim 24 , wherein refining the direct matching of the generated integral projections is performed at successively higher frame resolutions of the current frame n and other frame m.26. The method of claim 21 , further comprising:determining two or more projection angles for generating the integral projections of the current frame n and the other frame m.27. The method of claim 21 , further comprising:normalizing at least one of the generated integral ...

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31-10-2013 дата публикации

METHOD AND APPARATUS FOR DATA COMMUNICATION USING DIGITAL IMAGE PROCESSING

Номер: US20130286228A1
Автор: Kim Taesoo
Принадлежит: SAMSUNG ELECTRONICS CO. LTD.

A method and an apparatus for data communication using digital image processing are provided. The method for transmitting data using digital image processing includes displaying a reference image including one or more frames having preset image quality and including clock data for data synchronization in each frame, determining whether a confirmation signal indicating that transmission of data is possible is received within a preset time, and displaying a corrected reference image having image quality differing from the preset image quality when the confirmation signal is not received within the preset time. Data may thus be transmitted without a separate transceiver supporting a certain communication scheme, and data synchronization between a receiving end and a sending end is thus possible to more conveniently transmit/receive data. 1. A method for transmitting data using digital image processing , the method comprising:displaying a reference image comprising one or more frames having preset image quality and including clock data for data synchronization in each frame;determining whether a confirmation signal indicating that transmission of data is possible is received within a preset time; anddisplaying a corrected reference image having image quality differing from the preset image quality when the confirmation signal is not received within the preset time.2. The method of claim 1 , wherein the determining of whether the confirmation signal is received comprises:converting data to be transmitted into a data image having the quality of the reference image when the confirmation signal is received within the preset time; anddisplaying the data image.3. The method of claim 2 , wherein the converting of the data comprises converting the data to be transmitted into Red/Green/Blue (RGB) data of a certain format.4. The method of claim 1 , wherein the image quality is determined by a number of frames per unit time.5. The method of claim 4 , wherein the displaying of the ...

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07-11-2013 дата публикации

MOTION VECTOR BASED COMPARISON OF MOVING OBJECTS

Номер: US20130293783A1
Принадлежит: KONINKLIJKE PHILIPS N.V.

The present invention proposes to analyze movements of objects in video sequences (e.g. sport videos), by performing motion estimation to determine motion vectors at each frame. With the calculated motion vectors, the movements of the object(s) (e.g. athlete(s)) can be quantitatively measured. Based on this, movements in two videos can be compared at each individual frame of the video sequence. Different approaches (e.g., color coding) can be used to visualize and compare the movements. With motion estimation, intermediate frames can also be inserted to enable better movement comparison in two given videos. 1. An apparatus for analyzing a movement of different objects or same objects at different times captured in at least two video sequences , said apparatus comprising:a motion estimator for calculating motion vectors of said objects at individual frames of a first video sequence of said at least two video sequences;a frame interpolator for generating and inserting intermediate frames into said first video sequence based on said calculated motion vectors to upscale a frame rate of said first video sequence; anda frame aligner for performing spatial and temporal alignment of frames of said upscaled first video sequence with frames of a second video sequence of said at least two video sequences.2. The apparatus according to claim 1 , further comprising a visualizer for visualizing said movement of said at least one object.3. The apparatus according to claim 1 , further comprising a video generator for generating a third video sequence containing a difference of movements of objects of said first and second video sequences processed by said apparatus.4. The apparatus according to claim 2 , wherein said visualizer is adapted to visualize said movement of said object by adding information about at least one of movement direction claim 2 , movement magnitude and acceleration.5. The apparatus according to claim 4 , wherein said visualizer is adapted to add said ...

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21-11-2013 дата публикации

LOOK-AHEAD SYSTEM AND METHOD FOR PAN AND ZOOM DETECTION IN VIDEO SEQUENCES

Номер: US20130308058A1
Принадлежит: Apple Inc.

A look-ahead system and method for pan and zoom detection in video sequences is disclosed. The system and method use motion vectors in a reference coordinate system to identify pans and zooms in video sequences. The identification of pans and zooms enables parameter switching for improved encoding in various video standards (e.g., H.264) and improved video retrieval of documentary movies and other video sequences in video databases or other storage devices. 1. (canceled)2. A method of detecting at least one of a pan and a zoom in a video sequence , comprising:detecting motion vectors to detect a scene cut in a plurality of frames;selecting a set of frames from the video sequence in response to detection of a scene cut;identifying at least two regions in each selected frame, a first region having motion vectors of a first orientation and a second region having motion vectors of a second orientation;determining amounts of each frame covered by each of the at least two regions; andcomparing the detected amounts to threshold values, and based on comparisons, classifying the video sequence as having a pan or zoom. This application is a continuation of U.S. patent application Ser. No. 10/655,564, filed on Sep. 3, 2003, which is incorporated herein by reference in its entirety.The invention relates generally to analysis of motion in video sequences and, more particularly, to identifying pan and zoom global motion in video sequences.The analysis of motion information in video sequences has typically addressed two largely non-overlapping applications: video retrieval and video coding. In video retrieval systems, the dominant motion, motion trajectories and tempo are computed to identify particular video clips or sequences that are similar in terms of motion characteristics or belong to a distinct class (e.g., commercials). In video coding systems, global motion parameters are estimated for global motion compensation and for constructing sprites. In both video retrieval and ...

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28-11-2013 дата публикации

GRADIENT ADAPTIVE VIDEO DE-INTERLACING

Номер: US20130314595A1
Автор: Lu Tiehan
Принадлежит:

In some embodiments, a method includes receiving a plurality of video signal fields, characterizing at least one portion of at least one of the plurality of video signal fields, determining a value for a pixel using inter-field de-interlacing if the characterization satisfies a first criteria, determining a value for a pixel using motion compensated de-interlacing if the characterization satisfies a second criteria, and determining a value for a pixel using intra-field de-interlacing if the characterization satisfies a third criteria. In some embodiments, an apparatus includes a storage medium having stored instructions that when executed by a machine result in the method. 1. An apparatus comprising:circuitry to receive a plurality of video signal fields, to characterize at least one portion of at least one of the plurality of video signal fields, to determine a value for a pixel using inter-field de-interlacing if the characterization satisfies a first criteria, to determine a value for a pixel using motion compensated de-interlacing if the characterization satisfies a second criteria, and to determine a value for a pixel using intra-field de-interlacing if the characterization satisfies a third criteria;wherein circuitry to characterize at least one portion of at least one of the video signal fields comprises:circuitry to determine a sum of absolute differences based at least in part on the plurality of video signal fields and to filter the sum of absolute differences to provide a filtered sum of absolute differences; andwherein circuitry to determine a value for a pixel using inter-field de-interlacing if the characterization satisfies a first criteria comprises:circuitry to determine a value for a pixel using inter-field de-interlacing if the filtered sum of absolute differences is less than a threshold.2. The apparatus of wherein circuitry to characterize at least one portion of at least one of the plurality of video signal fields comprises:circuitry to ...

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05-12-2013 дата публикации

VIDEO SIGNAL PROCESSING DEVICE AND METHOD

Номер: US20130321705A1
Автор: NAKAGOSHI Ryosuke
Принадлежит: JVC KENWOOD CORPORATION

A multiband signal generator generates multiband signals from 21 lines of input data by using a subset of N lines with each line delayed from 1 line to N lines respectively. M line buffers delay the multiband signals such that each line is delayed from 1 line to M lines respectively. An analyzer detects correlations between video data by selecting regions with a maximum size M×M in the multiband signals, and analyzes characteristics of the video data. A multiband signal generator generates multiband signals with cutoff frequencies based on an analysis result from the analyzer, by using the data from 1-line through N-line delayed multiband signal. An amplitude adjuster and synthesizer unit adjusts and synthesizes amplitudes of the multiband signals. 1. A video signal processing device comprising:an N line buffer configured to delay input video data such that lines are delayed from 1 line to N lines respectively to create delayed input video data, where N is an integer of 2 or greater;a first multiband signal generator configured to generate first multiband signals that are obtained by dividing the delayed input video data output from the N line buffer into a first plurality of frequency bands, each having data lines delayed from 1 line to X lines respectively, where X is an integer of 2 or greater and smaller than N;M line buffers configured to delay each of the data in the first plurality of frequency bands output from the first multiband signal generator such that lines are delayed from 1 line to M lines respectively, where M is an integer;an analyzer configured to analyze characteristics of the input video data by selecting regions with a maximum of M horizontal pixels and M vertical lines in the data in the first plurality of frequency bands which is output from the M line buffers such that lines are delayed from 1 line to M lines respectively, and to detect correlations in each of the regions, between source data that is equivalent to the input video data, and ...

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19-12-2013 дата публикации

Video Analysis Based on Sparse Registration and Multiple Domain Tracking

Номер: US20130335635A1
Принадлежит:

A video of a scene includes multiple frames, each of which is registered using sparse registration to spatially align the frame to a reference image of the video. Based on the registered multiple frames as well as both an image domain and a field domain, one or more objects in the video are tracked using particle filtering. Object trajectories for the one or more objects in the video are also generated based on the tracking, and can optionally be used in various manners. 1. A method implemented in one or more computing devices , the method comprising:obtaining a video of a scene, the video including multiple frames;registering, using sparse registration, the multiple frames to spatially align each of the multiple frames to a reference image;tracking, based on the registered multiple frames as well as both an image domain and a field domain, one or more objects in the video; andgenerating, based on the tracking, an object trajectory for each of the one or more objects in the video.2. A method as recited in claim 1 , the video having been captured by one or more moving cameras.3. A method as recited in claim 1 , the sparse registration assuming that pixels belonging to moving objects in each video frame are sufficiently sparse.4. A method as recited in claim 1 , the registering being based on matching entire images or image patches.5. A method as recited in claim 1 , the registering comprising generating a sequence of homographies that map the multiple frames to the reference image.6. A method as recited in claim 1 , the video including multiple video sequences of a scene claim 1 , each video sequence having been captured from a different point viewpoint claim 1 , the registering further comprising:generating, for each video sequence, a sequence of homographies that map the multiple frames of the video sequence to the reference image;receiving, for each video sequence, a user input identifying corresponding pixels in a frame of the video sequence and the reference ...

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02-01-2014 дата публикации

Method for reframing images of a video sequence, and apparatus for reframing images of a video sequence

Номер: US20140002742A1
Принадлежит: Thomson Licensing SAS

A reframing application crops a sub-part of a video source, based on its content. The reframing application involves a visual attention model that produces a saliency map, and a dedicated reframing algorithm that extrapolates a cropping window based on that saliency map. After cropping, only the reframed portion of each video image remains visible. A method for processing images of a video sequence comprises steps of determining parameters of the video sequence, parameters of a previously decoded subsequence of the video sequence and user settings, determining a portion to be cropped according to the determined parameters, and cropping in a reframing step the determined portion for being displayed. An advantage of the invention is that an advanced automatic solution is provided for tuning automatically the reframing parameters, based on the content of a video.

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02-01-2014 дата публикации

IN-VEHICLE DISPLAY DEVICE

Номер: US20140002743A1
Принадлежит: Panasonic Corporation

An in-vehicle display device includes video input section into which a picture output from mobile terminal is input and display connected to video input section via video output controller and video output section. An output section of video input section is connected to an input section of image characteristics detector, an output section of image characteristics detector is connected to a first input section of image discriminator, an output section of vehicle operating state detector is connected to a second input section of image discriminator, and an output section of the image discriminator is connected to an input section of video output controller. Further, image discriminator compares an output from image characteristics detector with an output from vehicle operating state detector, and controls an output to video output controller. 1. An in-vehicle display device comprising:a video input section into which a picture output from a mobile terminal is input; anda display connected to the video input section via a video output controller and a video output section, whereinan output section of the video input section is connected to an input section of an image characteristics detector, an output section of the image characteristics detector is connected to a first input section of an image discriminator, an output section of a vehicle operating state detector is connected to a second input section of the image discriminator, and an output section of the image discriminator is connected to an input section of the video output controller, andthe image discriminator compares an output from the image characteristics detector input from the first input section with an output from the vehicle operating state detector input from the second input section, and controls an output to the video output controller.2. The in-vehicle display device according to claim 1 , wherein the image characteristics detector supplies an operating state and operating direction information ...

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09-01-2014 дата публикации

SYSTEM FOR MEDIA CORRELATION BASED ON LATENT EVIDENCES OF AUDIO

Номер: US20140009682A1
Автор: CHENG YANG M., MACHO DUSAN
Принадлежит: MOTOROLA SOLUTIONS, INC.

A method for determining a relatedness between a query video and a database video is provided. A processor extracts an audio stream from the query video to produce a query audio stream, extracts an audio stream from the database video to produce a database audio stream, produces a first-sized snippet from the query audio stream, and produces a first-sized snippet from the database audio stream. An estimation is made of a first most probable sequence of latent evidence probability vectors generating the first-sized audio snippet of the query audio stream. An estimation is made of a second most probable sequence of latent evidence probability vectors generating the first-sized audio snippet of the database audio stream. A similarity is measured between the first sequence and the second sequence producing a score of relatedness between the two snippets. Finally a relatedness is determined between the query video and a database video. 1. A method for determining a relatedness between a query video and a database video , the method comprising the steps of:extracting an audio stream from the query video to produce a query audio stream;extracting an audio stream from the database video to produce a database audio stream;producing a first-sized snippet from the query audio stream;producing a first-sized snippet from the database audio stream;estimating a first most probable sequence of latent evidence probability vectors generating the first-sized audio snippet of the query audio stream;estimating a second most probable sequence of latent evidence probability vectors generating the first-sized audio snippet of the database audio stream;measuring a similarity between the first sequence and the second sequence to produce a score of relatedness between the first-sized query audio snippet and the first-sized database audio snippet; anddetermining a relatedness between the query video and a database video based on the measure of similarity.2. The method of further comprising the ...

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23-01-2014 дата публикации

APPARATUS, METHOD AND VIDEO DECODER FOR RECONSTRUCTING OCCLUSION REGION

Номер: US20140022453A1
Принадлежит:

A method of processing image data includes detecting a contour between an occlusion region and a non-occlusion region in a motion vector field of input video, generating a first contour and a second contour from the detected contour based on motion vectors of blocks corresponding to the detected contour, and separating the occlusion region into a first occlusion region adjacent to the first contour and a second occlusion region adjacent to the second contour. The method further includes reconstructing motion vectors of the first occlusion region based on motion vectors of the first contour and reconstructing motion vectors of the second occlusion region based on motion vectors of the second contour. 1. An apparatus for reconstructing an occlusion region , comprising:an occlusion detector configured to receive data corresponding to a motion vector field of a video frame and to detect an occlusion region in the motion vector field, the occlusion region corresponding to one which does not have motion vectors or has inaccurate motion vectors;a contour separator configured to detect a contour between the detected occlusion region and a non-occlusion region and to separate the detected contour into a first contour and a second contour based on motion vectors of blocks included in the detected contour;an occlusion separator configured to separate the detected occlusion region into a first occlusion region adjacent to the first contour and a second occlusion region adjacent to the second contour; andan occlusion reconstructor configured to reconstruct motion vectors of the first occlusion region based on motion vectors of the first contour and to reconstruct motion vectors of the second occlusion region based on motion vectors of the second contour.2. The apparatus of claim 1 , further comprising:a motion estimator configured to generate the motion vector field by comparing temporally adjacent frames of input video and providing the data corresponding to the motion vector ...

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30-01-2014 дата публикации

IMAGE TRANSMITTING/RECEIVING SYSTEM, IMAGE TRANSMITTING APPARATUS, RECEIVED IMAGE DISPLAYING APPARATUS, WIRELESS CONTROL APPARATUS, AND IMAGE TRANSMITTING/RECEIVING METHOD

Номер: US20140028916A1
Принадлежит: OLYMPUS CORPORATION

A received image displaying apparatus comprises: a wireless communication unit that wirelessly receives the frame images transmitted by the image transmitting apparatus with which the received image displaying apparatus has established a connection of wireless communication; and a displaying unit that displays the frame images, which were wirelessly received by the wireless communication unit, in an order in which the frame images were captured. At least one of the image transmitting apparatus and the received image displaying apparatus comprises: a reference sync signal generating unit that generates the reference sync signals; and a control unit that, if the wireless communication unit has received no reference sync signals for a certain time interval, controls the reference sync signal generating unit to generate reference sync signals and that further controls the wireless communication unit to wirelessly transmit the reference sync signals to the other apparatus included in the image transmitting/receiving system. 1. An image transmitting/receiving system comprising:a plurality of image transmitting apparatuses each of which continuously wirelessly transmits continuously captured frame images in a captured order; anda plurality of received image displaying apparatuses each of which continuously wirelessly receives the frame images continuously wirelessly transmitted by the plurality of image transmitting apparatuses and continuously displays the received frame images in the captured order, wherein 'a first wireless communication unit that wirelessly transmits the frame image to the received image displaying apparatus, which has established a wireless communication connection with the image transmitting apparatus, in synchronization with a reference synchronization signal,', 'the image transmitting apparatus comprises a second wireless communication unit that wirelessly receives the frame images transmitted from the image transmitting apparatus having ...

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06-03-2014 дата публикации

VIDEO PROCESSING DEVICE WITH POWER ADJUSTMENT AND METHODS FOR USE THEREWITH

Номер: US20140063349A1
Принадлежит: VIXS SYSTEMS, INC.

A video processing device includes a substrate. A plurality of ring oscillators generate a corresponding plurality of ring oscillator outputs. A control circuit generates power adjustment signals for adjusting at least one power supply voltage of the video processing device, based on the plurality of oscillator outputs. 1. A video processing device comprising:a substrate;a plurality of ring oscillators coupled to the substrate, the plurality of ring oscillators generating a corresponding plurality of ring oscillator outputs; anda control circuit, coupled to monitor the plurality of ring oscillator outputs, that generates power adjustment signals for adjusting at least one power supply voltage of the video processing device, based on the plurality of oscillator outputs.2. The video processing device of wherein the at least one power supply voltage includes a plurality of power supply voltages and the plurality of ring oscillators are distributed at different locations on the substrate claim 1 , and wherein the control circuit generates the power adjustment signals to adjust the plurality of power supply voltages corresponding to at least two of the plurality of different locations on the substrate.3. The video processing device of wherein the control circuit includes:a ring oscillator output selector that generates a selected ring oscillator output from the plurality of ring oscillator outputs based on a ring oscillator selection;a frequency detector, coupled to the ring oscillator output selector, that generates a ring oscillator frequency based on the selected ring oscillator output; anda control signal generator, coupled to the frequency detector and the ring, that generates the ring oscillator selection and the power adjustment signals, based on the selected ring oscillator output.4. The video processing device of wherein the control signal generator generates the ring oscillator selection to scan the plurality of ring oscillator outputs.5. The video processing ...

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06-03-2014 дата публикации

VIDEO PROCESSING DEVICE WITH ADJUSTABLE DELAY AND METHODS FOR USE THEREWITH

Номер: US20140064383A1
Автор: Weinberg Yoav
Принадлежит: VIXS SYSTEMS, INC.

A video processing device includes a plurality of circuit modules that cooperate to process an input video signal into a processed video signal. A control circuit generates a delay adjustment signal in response to a delay calibration of the plurality of circuit modules. An adjustable delay circuit couples a signal from a first circuit module of the plurality of circuit modules, to a second circuit module of the plurality of circuit modules with a delay that is set based on the delay adjustment signal. 1. A video processing device comprising:a plurality of circuit modules that cooperate to process an input video signal into a processed video signal;a control circuit, coupled to the plurality of circuit modules, that generates a delay adjustment signal in response to a delay calibration of the plurality of circuit modules; andan adjustable delay circuit, coupled to the plurality of circuit modules and the control circuit, that couples a signal from a first circuit module of the plurality of circuit modules, to a second circuit module of the plurality of circuit modules with a delay that is set based on the delay adjustment signal.2. The video processing device of wherein the control circuit gathers timing feedback signals from at least one of: the first circuit module and the second circuit module in conjunction with the delay calibration.3. The video processing device of wherein the control circuit generates the delay adjustment signal based on the timing feedback signals.4. The video processing device of wherein the control circuit includes a register adjustment generator that generates register file modification based on the delay adjustment signal corresponding to at least one register.5. The video processing device of wherein the adjustable delay circuit sets the delay based on delay data stored in the at least one register.6. The video processing device of wherein the plurality of circuit modules cooperate to process the input video signal by at least one of: a ...

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13-03-2014 дата публикации

Self configuring distribution amplifier for digital video signals

Номер: US20140071346A1
Автор: Jack Gershfeld
Принадлежит: Individual

A self configuring distribution amplifier for digital video signals comprises a number of signal processing circuits disposed on a bus along a signal propagation direction. Each signal processing circuit has an input and an output, as well as an input detection circuit controlling three different switches. The positions of the switches determines whether a signal from a particular input is present on a particular output and on the bus. This allows the self configuring distribution amplifier to distribute digital video signals from a number of inputs to a number of outputs in desired combinations.

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27-03-2014 дата публикации

VIDEO SIGNAL PROCESSING APPARATUSES

Номер: US20140085539A1
Автор: LEE Ki-Ho
Принадлежит: SAMSUNG ELECTRONICS CO., LTD.

A video signal processing apparatus may include a first analog-to-digital converter (ADC) configured to convert an analog video signal into a first digital video signal according to a first clock; and/or a second ADC configured to convert the analog video signal into a second digital video signal according to a second clock that is different from the first clock. The first and second clocks may have a first phase difference in a first section of the analog video signal, such that the first and second ADCs operate alternately, first ADC then second ADC, and the first and second clocks may be generated to have a second phase difference, that is different from the first phase difference, in a second section of the analog video signal that is different from the first section, such that the first and second ADCs operate alternately, second ADC then first ADC. 1. A video signal processing apparatus , comprising:a first analog-to-digital converter (ADC) configured to convert an analog video signal into a first digital video signal according to a first clock; anda second ADC configured to convert the analog video signal into a second digital video signal according to a second clock that is different from the first clock;wherein the first clock and the second clock are generated to have a first phase difference in a first section of the analog video signal, such that the first ADC and the second ADC operate alternately in an order of the first ADC and the second ADC, and the first clock and the second clock are generated to have a second phase difference, that is different from the first phase difference, in a second section of the analog video signal that is different from the first section of the analog video signal, such that the first ADC and the second ADC operate alternately in the order of the second ADC and the first ADC.2. The apparatus of claim 1 , further comprising:a clock generator configured to generate the first clock and the second clock, such that the first ...

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03-04-2014 дата публикации

VIDEO SIGNAL PROCESSING DEVICE AND DISPLAY APPARATUS

Номер: US20140092310A1
Автор: Hohjoh Naohiro
Принадлежит: SHARP KABUSHIKI KAISHA

A video signal processing device according to an embodiment of the present invention includes a motion vector detection unit and a plurality of interpolated image generation units. The motion vector detection unit detects an interpolated motion vector which represents a motion between a first broad image and a second broad image. Each of the interpolated image generation units generates an interpolated partial image corresponding to a divided area by using a first partial image of a first frame, a second partial image of a second frame, and the interpolated motion vector. 1. A video signal processing device comprising:when different partial areas in a predetermined display area are respectively a first area and a second area,a motion vector detection unit which detects, by using a first broad image corresponding to the display area of a first frame and a second broad image corresponding to the display area of a second frame, a motion vector which represents a motion between the first broad image and the second broad image;a first interpolated partial image generation unit which generates, by using a first partial image corresponding to the first area of the first frame, a second partial image corresponding to the first area of the second frame, and the motion vector, a first interpolated partial image that is inserted between the first frame and the second frame and corresponds to the first area; anda second interpolated partial image generation unit which generates, by using a third partial image corresponding to the second area of the first frame, a fourth partial image corresponding to the second area of the second frame, and the motion vector, a second interpolated partial image that is inserted between the first frame and the second frame and corresponds to the second area.2. The video signal processing device according to claim 1 ,wherein the first interpolated partial image generation unit and the second interpolated partial image generation unit are ...

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01-01-2015 дата публикации

Digital Video Content Fingerprinting Based on Scale Invariant Interest Region Detection with an Array of Anisotropic Filters

Номер: US20150003731A1
Принадлежит: ZEITERA, LLC

Video sequence processing is described with various filtering rules applied to extract dominant features for content based video sequence identification. Active regions are determined in video frames of a video sequence. Video frames are selected in response to temporal statistical characteristics of the determined active regions. A two pass analysis is used to detect a set of initial interest points and interest regions in the selected video frames to reduce the effective area of images that are refined by complex filters that provide accurate region characterizations resistant to image distortion for identification of the video frames in the video sequence. Extracted features and descriptors are robust with respect to image scaling, aspect ratio change, rotation, camera viewpoint change, illumination and contrast change, video compression/decompression artifacts and noise. Compact, representative signatures are generated for video sequences to provide effective query video matching and retrieval in a large video database. 1. A method for interest point descriptor and signature generation , the method comprising:{'sub': x', 'y, 'generating refined interest point parameter vectors, wherein each vector contains a set (s, s, x, y, peak polarity);'}{'sub': x', 'y', 'x', 'y, 'drawing a rectangular box encompassing Ns×Mspixels and centered at an interest point (x, y) location associated with a set (s, s, x, y, peak polarity); and'}determining a multi-dimensional descriptor and a multi-dimensional signature based on pixels in the rectangular box.2. The method of further comprising:re-sampling the rectangular box into a J×J pixel square area box.3. The method of wherein a gradient vector is computed for each pixel of the J×J box.4. The method of wherein the J×J square-area box is comprised of a set of K×K re-sampled square area sub-boxes.5. The method of further comprises:computing a resultant gradient vector magnitude for each of the K×K sub-boxes.6. The method of further ...

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13-01-2022 дата публикации

DEINTERLACING VIA DEEP LEARNING

Номер: US20220014708A1
Принадлежит:

One embodiment of the present invention sets forth a technique for performing deinterlacing. The technique includes separating a first interlaced video frame into a first sequence of fields ordered by time, the first sequence of fields including a first field. The technique also includes generating, by applying a deinterlacing network to a first field in the first sequence, a second field that is missing from the first sequence of fields and is complementary to the first field. The technique further includes constructing a progressive video frame based on the first field and the second field. 1. A method for performing deinterlacing , comprising:separating a first interlaced video frame into a first sequence of fields ordered by time, the first sequence of fields including a first field;generating, by applying a machine learning model that comprises a deinterlacing network to the first field, a second field that is missing from the first sequence of fields and is complementary to the first field; andconstructing a progressive video frame based on the first field and the second field.2. The method of claim 1 , further comprising:extracting a second sequence of fields from a progressive video;inputting the second sequence of fields as training data for the deinterlacing network; andupdating parameters of the deinterlacing network to reduce an error between a third sequence of fields generated by the deinterlacing network based on the second sequence of fields and a fourth sequence of fields that is complementary to the second sequence of fields in the progressive video.3. The method of claim 1 , further comprising:adding, to the first sequence of fields, one or more fields from one or more interlaced video frames adjacent to the first interlaced video frame in an interlaced video; andapplying the deinterlacing network to the first sequence of fields to produce the second field.4. The method of claim 3 , wherein applying the deinterlacing network to the first sequence ...

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03-01-2019 дата публикации

SENDING NETWORK CAMERA VIDEO STREAMS TO ACTIVE SCREENS

Номер: US20190007656A1
Принадлежит:

A camera router application on a router or wireless access point can receive video streams from one more cameras in a home, office, factory or other environment having cameras. The camera router application can receive or detect an event associated with a camera. In response to detecting the event, the camera router application can determine an active screen. The camera router application can router a video stream from the camera to the active screen. 1. A method comprising:receiving, by a camera stream router, one or more video streams from one or more cameras communicably coupled to a router;detecting an event associated with a camera of the one or more cameras;determining, by the camera stream router, an active screen from a plurality of screens communicably coupled to the router; androuting, by the camera stream router a video stream from the camera to the active screen.2. The method of claim 1 , wherein the active screen comprises one of a screen coupled to a computer claim 1 , a television screen claim 1 , and a screen of a mobile device.3. The method of claim 1 , wherein the one or more cameras include a camera coupled to a baby monitor claim 1 , a camera coupled to a doorbell claim 1 , and a camera coupled to a security system.4. The method of claim 1 , wherein detecting the event associated with the camera comprises detecting one of a motion event or an audio event at the camera.5. The method of claim 1 , wherein determining claim 1 , by the camera stream router claim 1 , the active screen comprises determining presence of network request and network response data associated with a device coupled to the active screen.6. The method of claim 1 , wherein determining the presence of network request and network response data comprises determining the presence of network request and network response data associated with user interaction with an application on the device. The method of claim 1 , wherein determining claim 1 , by the camera stream router claim 1 , ...

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11-01-2018 дата публикации

PASSIVE OPTICAL DETECTION METHOD AND SYSTEM FOR VEHICLES

Номер: US20180012461A1
Принадлежит:

A system, method, and apparatus are discussed for a passive optical camera-based system to detect a presence of one or more vehicles with one or more cameras. A detection algorithm is applied to recognize of the presence of the one or more vehicles using one or more imaging processors and the one or more cameras to detect fluctuations in light intensity from scattered light and/or reflections off of that vehicle. Those scattered light and/or reflections are captured in images contained in a set of frames from the one or more cameras. 1. A system , comprising:a passive optical camera-based system configured to detect a presence of one or more vehicles with one or more cameras, where the passive optical camera-based system is configured to apply a detection algorithm to recognize the presence of the one or more vehicles using one or more imaging processors and the one or more cameras to detect fluctuations in light intensity from scattered light and/or reflections off of that vehicle, where those scattered light and/or reflections are captured in images contained in a set of frames from the one or more cameras, which are processed by the detection algorithm and imaging processors, where any portions of the detection algorithm implemented in software is stored in an executable format in a memory and is executed by one or more processors.2. The system of claim 1 , where the detection algorithm is configured to identify and characterize the presence of the vehicles by directly measuring fluctuations in light intensity from the i) reflections off of; ii) emissions from claim 1 , iii) blocking of background light by and/or iv) scattering of light from claim 1 , a) the vehicle's rotor or b) other moving or vibrating parts of the vehicle; and thus claim 1 , the detection algorithm is configured to find pixels in each frame 1) with the fluctuations in light intensity greater than a noise band as well as 2) these pixels are part of group of connected two or more pixels with ...

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15-01-2015 дата публикации

FILTERING A DISPLACEMENT FIELD BETWEEN VIDEO FRAMES

Номер: US20150015792A1
Принадлежит:

The invention relates to a method for filtering a displacement field between a first image and a second image, a displacement field comprising for each pixel of the first (reference) image a displacement vector to the second image (current). The method comprises a first step of spatio-temporal filtering wherein a weighted sum of neighboring displacement vectors produces, for each pixel of the first image, a filtered displacement vector. The filtering step is remarkable in that a weight in the weighted sum is a trajectory weight, that is a trajectory weight is representative of a trajectory similarity. According to an advantageous characteristic, a trajectory associated to a pixel of the first image comprises a plurality of displacement vectors from the pixel to a plurality of images. According to another advantageous characteristic, a trajectory weight comprises a distance between a trajectory from the pixel and a trajectory from a neighboring pixel. The method also relates to a graphics processing unit and to computer-readable medium for implementing the weight filtering method. 111-. (canceled)12. A method for filtering a displacement field between a first image and a second image , said displacement field comprising for each pixel of said first image a displacement vector to the second image , said method comprising a spatio-temporal filtering wherein a weighted sum of neighboring displacement vectors produces , for each pixel of said first image , a filtered displacement vectorand wherein a weight in said weighted sum is a trajectory weight being representative of a trajectory similarity, a trajectory associated to a pixel of said first image comprises a plurality of displacement vectors from said pixel to a plurality of images, said trajectory similarity results from a distance between a trajectory from said pixel and a trajectory from a neighboring pixel.1311. The method for filtering according to claim , wherein said spatio-temporal filtering comprises for ...

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11-01-2018 дата публикации

METHOD FOR DETECTING TERMINAL STATIC LAYER INFORMATION, TERMINAL AND TELEVISION

Номер: US20180013931A1
Автор: Li Xin, Su Hui, YU QINGXIAO
Принадлежит:

Embodiments of present application relate to a method for detecting terminal static layer information, a terminal and a television. Based on the fact that a static layers in the terminal such as the OSD display layer and third-party application are managed as a whole by the terminal layer management module, this embodiment sets forth that: a current topmost layer is determined according to number information of each layer in a terminal layer management module; then a pixel value of a preset region in the topmost layer is obtained; analysis is performed on the pixel value in the preset region, and it is determined whether the pixel value of the preset region is different from a target pixel value. If the pixel value of the preset region is different from the target pixel value, then it is determined that there is image content in the topmost layer. 1. A method for detecting terminal static layer information , comprising:determining a current topmost layer according to number information of each layer in a terminal layer management module;obtaining a pixel value of a preset region in the topmost layer;determining whether the pixel value of the preset region is different from a target pixel value;determining that there is image content in the topmost layer, if the pixel value of the preset region is different from the target pixel value.2. The method for detecting terminal static layer information according to claim 1 , wherein the obtaining a pixel value of a preset region in the topmost layer comprises:obtaining RGB pixel values of all pixels in the preset region of the topmost layer;calculating a mean of the RGB pixel values in the preset region according to the RGB pixel values of all the pixels in the preset region;setting the mean of the RGB pixel values in the preset region as the pixel value of the preset region.3. The method for detecting terminal static layer information according to claim 1 , wherein the determining whether the pixel value of the preset ...

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10-01-2019 дата публикации

IMAGE TRANSFER SYSTEM, IMAGE RECEIVER, IMAGE TRANSMITTER, IMAGE TRANSFER METHOD, IMAGE RECEPTION METHOD, IMAGE TRANSMISSION METHOD, AND PROGRAM

Номер: US20190014237A1
Принадлежит: OLYMPUS CORPORATION

A synchronization signal generation function of an image transmitter is configured to generate an imaging synchronization signal. One or more processors of the image transmitter cause an imager of the image transmitter to perform new imaging every time the imaging synchronization signal is generated and cause communication data corresponding to captured image data output from the imager to be transmitted from a communicator of the image transmitter to an image receiver by radio waves. A synchronization signal generation function of the image receiver is configured to generate a display synchronization signal. One or more processors of the image receiver is configured to generate a display image corresponding to the captured image data from the communication data received by radio waves in a communicator of the image receiver and cause a monitor of the image receiver to display a newly generated display image every time the display synchronization signal is generated. 1. An image transfer system having an image transmitter and an image receiverwherein the image transmitter includes a communicator, an imager, a synchronization signal generation function, and one or more processors,wherein the image receiver includes a communicator, a monitor, a synchronization signal generation function, and one or more processors,wherein the synchronization signal generation function of the image transmitter is configured to generate an imaging synchronization signal,wherein the one or more processors of the image transmitter cause the imager to perform new imaging every time the imaging synchronization signal is generated and cause communication data corresponding to captured image data output from the imager to be transmitted from the communicator of the image transmitter to the image receiver by radio waves,wherein the synchronization signal generation function of the image receiver is configured to generate a display synchronization signal,wherein the one or more processors of ...

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14-01-2021 дата публикации

IMAGE SENSOR AND ELECTRONIC DEVICE INCLUDING THE IMAGE SENSOR

Номер: US20210014387A1
Принадлежит:

An electronic device is provided. The electronic device includes a first image sensor, a second image sensor electrically connected to the first image sensor, and a processor operatively connected to the first image sensor and the second image sensor. The processor may be configured to generate first image data using the first image sensor and generate second image data using the second image sensor based on a synchronizing signal, transmit the second image data generated by the second image sensor to the first image sensor, and control the first image sensor to generate and output image data by processing the first image data and the second image data based on the synchronizing signal. 1. An electronic device comprising:a first image sensor;a second image sensor electrically connected to the first image sensor; anda processor operatively connected to the first image sensor and the second image sensor, generate first image data using the first image sensor,', 'generate second image data using the second image sensor based on a synchronizing signal,', 'transmit the second image data to the first image sensor, and', 'control the first image sensor to generate output image data and output the output image data by processing the first image data and the second image data based on the synchronizing signal., 'wherein the processor is configured to2. The electronic device of claim 1 , wherein the processor is further configured to:transmit the synchronizing signal to the first image sensor and the second image sensor, andcontrol the first image sensor and the second image sensor to simultaneously generate the first image data and the second image data based on the synchronizing signal.3. The electronic device of claim 1 , wherein the processor is further configured to control the first image sensor to generate and output the output image data by performing cross-synthesis of the first image data and the second image data in a unit of a frame based on the synchronizing ...

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19-01-2017 дата публикации

IMAGE PRODUCTION FROM VIDEO

Номер: US20170017855A1
Принадлежит: GOOGLE INC.

Implementations generally relate to producing a still image from a video or series of continuous frames. In some implementations, a method includes receiving the frames that a capture device shot while moving in at least two dimensions. The method further includes analyzing the frames to determine changes of positions of objects in at least two of the frames due to movement of the objects in the scene relative to changes of positions of objects due to the movement of the capture device during the shoot time. The method further includes determining, based at least in part on the variability of the objects, one or more target subjects which the capture device captures during the shoot time. One or more still images are generated from the plurality of frames having at least a portion of the target subject. 1. A computer-implemented method to generate one or more still images , the method comprising:receiving a video of a scene captured by a capture device during a shoot time, wherein the capture device is moved in at least two dimensions during the shoot time;analyzing a plurality of frames of the video to determine variability of objects in at least two of the plurality of frames due to movement of the objects in the scene relative to movement of the capture device during the shoot time, anddetermining, based at least in part on the variability of the objects, one or more target subjects which the capture device captures during at least a portion of the shoot time; andgenerating one or more still images based on the plurality of frames of the video having at least a portion of the target subject.2. The method of claim 1 , wherein the video is automatically captured by the capture device upon determination of a threshold initiation movement of the capture device prior to capture of the video claim 1 , wherein the threshold initiation movement includes two or more movement characteristics.3. The method of claim 2 , wherein the two or more movement characteristics ...

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18-01-2018 дата публикации

CONTENT AWARE VISUAL IMAGE PATTERN MATCHING

Номер: US20180018776A1
Автор: Sendik Omry, Sfaradi Roee
Принадлежит:

Exemplary embodiments of the invention as described herein generally provide for detecting the displacement of feature(s) within a visual image in cases where pattern matching fails due to the existence of aperture(s) caused for example by external condition(s) encountered in recording such an image over time. Technique(s) are disclosed for detecting the difference between displacement of a geometric feature of an object appearing within an image (e.g., an edge or smooth surface) that has an aperture and another feature (e.g., a corner) that does not since it is not symmetrically invariant. 1. A method for detecting time-elapsed movement of a geometric feature of an object found within a visual image comprising:selecting a reference region defining a luminance value for at least a portion of an object found within a source image;selecting at least one other region within a target image defining another luminance value for at least a portion of the object found within the source image;defining a motion estimation block comprised of a plurality of image location(s) for use of a similarity measure in evaluating whether a luminance value for a selected region within the target image substantially corresponds to a luminance value for the reference region within the source image;forming a matrix containing an array of value(s) from the motion estimation block that define a relative distance in each geometric dimension between the source image and any one or more selected region(s) within the target image having a luminance value that substantially corresponds to a luminance value for the reference region within the source image;combining motion estimation block value(s) within the matrix to define at least one motion estimation vector with an absolute distance index value in each geometric dimension that is used to project movement of the object from the reference region in the source image to a corresponding region in the target image; andperforming a contrast ...

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18-01-2018 дата публикации

REALIZATION METHOD AND SYSTEM OF MOTION DRIVING EFFECT

Номер: US20180018802A1
Автор: Cao Xiang
Принадлежит:

A method and system for achieving motion driven effect enable an abundant variable space for the driven effect. The method comprises: step 1: detecting, at a new time point, all unit motions in a target area, wherein each unit motion represents motion in a local area of the target area at the time point; step 2: creating, according to each unit motion, one particle or a set of particles, wherein all created particles constitute a particle system; and step 3: updating, according to behavioral parameters of each particle, a status thereof, determining and applying a driven effect generated by the particle system, and returning back to step 1 to proceed until motions in the target area are ended. The system comprises: a detecting module, a particle creating module, and a determining and applying effect module. The present invention is used to the field of human-computer interaction and computer graphics. 1. A method for achieving motion driven effect , comprising:step 1: detecting, at a new time point, all of unit motions in a target area, wherein each unit motion represents motion in a local area of the target area at the time point;step 2: creating, according to each of the unit motions, one particle or a set of particles, wherein all of the created particles constitute a particle system; andstep 3: updating, according to behavioral parameters of each particle, a status thereof, determining and applying a driven effect generated by the particle system, and returning back to step 1 to proceed until motions in the target area are ended.2. The method according to claim 1 , wherein claim 1 , detecting all of unit motions in the target area comprises:performing filtration and selection to all of the unit motions in the target area in some manners, wherein, the manners include: corresponding to an object in the target area, a specified area of an object in the target area, or a specified motion of an object in the target area.3. The method according to claim 2 , wherein ...

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19-01-2017 дата публикации

IMAGE CAPTURING APPARATUS AND METHOD

Номер: US20170019589A1
Принадлежит:

An image capturing apparatus and method are provided. The image capturing apparatus includes an image capturing unit including a camera, the image capturing unit configured to capture an image, and a controller connected to the image capturing unit. The controller is configured to set a position of a focus lens at a distance at which an object of the image to be captured is predicted to be positioned, to measure a movement speed of the object of the image to be captured, to determine an image capturing time by predicting a time until the object reaches the set position of the focus lens based on the measured movement speed, and to control the image capturing unit to capture the image of the object at the determined image capturing time. 1. An image capturing apparatus comprising:an image capturing unit configured to capture an image; anda controller connected to the image capturing unit,wherein the controller is configured to set a position of a focus lens at a distance at which an object of the image to be captured is predicted to be positioned, to measure a movement speed of the object of the image to be captured, to determine an image capturing time by predicting a time until the object reaches the set position of the focus lens based on the measured movement speed, and to control the image capturing unit to capture the image of the object at the determined image capturing time.2. The image capturing apparatus according to claim 1 , wherein the controller is configured to determine the image capturing time taking into account a shutter release lag.3. The image capturing apparatus according to claim 1 , wherein the controller is configured to set the position of the focus lens on another object positioned at the distance at which the object of the image to be captured is predicted to be positioned.4. The image capturing apparatus according to claim 1 , wherein the controller is configured to set the position of the focus lens based on receiving a touch input ...

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19-01-2017 дата публикации

Method and Device for Generating a Motion-Compensated Video Frame

Номер: US20170019624A1
Принадлежит:

A method for generating a motion-compensated video frame based on four successive frames of an original video sequence is presented, where the four successive frames comprise frame A, frame B, frame C and frame D. The method comprises obtaining three successive motion estimation pairs, wherein a first pair comprises a forward motion vector field A_FWD from A to B and a backward motion vector field B_BCK from B to A, wherein a second pair comprises a forward motion vector field B_FWD from B to C and a backward motion vector field C_BCK from C to B and wherein a third pair comprises a forward motion vector field C_FWD from C to D and a backward motion vector field D_BCK from D to the C; and generating the motion-compensated video frame based on interpolating between the frames B and C, using the three successive motion estimation pairs. 1. A method for generating a motion-compensated video frame based on four successive frames of an original video sequence , wherein the four successive frames comprise a first frame A , a second frame B , a third frame C and a fourth frame D , the method comprising:obtaining three successive motion estimation pairs, wherein a first pair comprises a forward motion vector field A_FWD from A to B and a backward motion vector field B_BCK from B to A, wherein a second pair comprises a forward motion vector field B_FWD from B to C and a backward motion vector field C_BCK from C to B, and wherein a third pair comprises a forward motion vector field C_FWD from C to D and a backward motion vector field D_BCK from D to the C; andgenerating the motion-compensated video frame based on interpolating between the frames B and C, using the three successive motion estimation pairs.2. The method of claim 1 , further comprising repairing the motion vector fields B_FWD and C_BCK to provide a repaired forward motion vector field REPAIRED_FWD from B to C and a repaired backward motion vector field REPAIRED_BCK from C to B.3. The method of claim 2 , wherein ...

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19-01-2017 дата публикации

PROJECTION IMAGE DISPLAY APPARATUS

Номер: US20170019648A1
Принадлежит:

The projection image display apparatus includes a display element that emits image light generated by modulating light from a light source based, a pixel-shifter that shifts a pixel of a projected image by changing an optical path of the image light, a resampling circuit, a motion-interpolation image processing circuit, and a pixel-shift controller. The resampling circuit generates a plurality of sub-frame image signals having a resolution of the display element, by resampling an image signal having a resolution of the projected image. The motion-interpolation image processing circuit provides a motion-interpolation image process to the sub-frame image signals. The pixel-shift controller receives the sub-frame image signals having undergone the motion-interpolation image process. The pixel-shift controller drives the display element and the pixel shifter at a given timing based on the sub-frame image having undergone the motion-interpolation image process, and then displays the projected image, which involves pixel-shift, on a screen. 1. A projection image display apparatus equipped with a display element that emits image light generated by modulating light from a light source based on a video signal , and a pixel shifter that shifts a pixel of a projected image by changing an optical path of the image light emitted from the display element , the projection image display apparatus comprising:a resampling circuit for generating a plurality of sub-frame image signals having a resolution equal to a resolution of the display element, by resampling an image signal having a resolution equal to a resolution of the projected image;a motion-interpolation image processing circuit for providing a motion-interpolation image process to the sub-frame image signals output from the resampling circuit; anda pixel-shift controller for receiving sub-frame image signals having undergone the motion-interpolation image process and supplied from the motion-interpolation image processing ...

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22-01-2015 дата публикации

FLICKER DETECTION METHOD AND FLICKER DETECTION APPARATUS

Номер: US20150022686A1
Принадлежит: FUJITSU LIMITED

The present invention discloses a flicker detection method and a flicker detection apparatus. The method includes: calculating the mean values of selected rows of image frames to constitute a mean value vector; calculating a differential vector between the mean value vectors of a current frame and a previous frame; calculating a DC-free difference vector by subtracting a direct current component from respective elements of the differential vector; calculating a power spectrum corresponding to the DC-free difference vector; obtaining a first frequency reference value; obtaining a second frequency reference value; and if the difference between the first and second frequency reference values is above a threshold, then it is determined that flicker is present in the current frame; otherwise, it is determined that no flicker is present. 1. A flicker detection method of detecting flicker in a sequence of image frames , the method comprising:calculating mean values of selected rows of the image frames, the mean values constituting a mean value vector mean_row(k) in an order of the rows;calculating a differential vector diff_frame(k) between the mean value vector mean_row(k) of a current frame and the mean value vector mean_row(k−1) of a previous frame;calculating a DC-free difference vector diff_mean_row(k) by subtracting a direct current component of the differential vector diff_frame(k) from respective elements of the differential vector diff_frame(k);calculating a power spectrum corresponding to the DC-free difference vector diff_mean_row(k);obtaining one of a value of the power spectrum at a first frequency and a mean value of the power spectrum in a predetermined range around the first frequency as a first frequency reference value;obtaining one of the value of the power spectrum at a second frequency and the mean value of the power spectrum in a predetermined range around the second frequency as a second frequency reference value; andif a difference between the first ...

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22-01-2015 дата публикации

VIDEO PROCESSING APPARATUS, DISPLAY APPARATUS, AND VIDEO PROCESSING METHOD

Номер: US20150022723A1
Автор: KEGASAWA Kazuyoshi
Принадлежит: SEIKO EPSON CORPORATION

A video input section acquires a video signal formed of a plurality of frames. A frame separator separates the video signal acquired by the video input section on a frame basis and distributes the separated video signals. A plurality of parallel processors perform video processing in parallel on the separated video signals corresponding to the frames separated and distributed by the frame separator. A frame combiner combines the separated video signals on which the plurality of parallel processors have performed the video processing. 1a video input section that acquires a video signal formed of a plurality of frames;a frame separator that separates the video signal acquired by the video input section on a frame basis and distributes the separated video signals;a plurality of parallel processors that perform video processing in parallel on the separated video signals corresponding to the frames separated and distributed by the frame separator; anda frame combiner that combines the separated video signals on which the plurality of parallel processors have performed the video processing.. A video processing apparatus comprising: This is a continuation of U.S. application Ser. No. 14/136,194 filed Dec. 20, 2013. The entire disclosure of Japanese Patent Application No. 2013-003254, filed Jan. 11, 2013, is expressly incorporated by reference herein.1. Technical FieldThe present invention relates to a video processing apparatus, a display apparatus, and a video processing method.2. Related ArtAn example of a video processing method for processing high-resolution video images having a resolution of 4096×2160 pixels (hereinafter referred to as 4K2K) or greater includes dividing a single screen into a plurality of screens, processing the divided screens in parallel, and eventually combining the processed screens with each other. A screen of high resolution is thus processed. The technology described in JP-A-2007-67499 includes inputting an image captured with a video ...

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25-01-2018 дата публикации

Method and System for Motion Vector-Based Video Monitoring and Event Categorization

Номер: US20180025230A9
Принадлежит:

A computer system processes a video stream to detect a start of a first motion event candidate in the video stream, and in response to detecting the start of the first motion event candidate in the video stream, initiates event recognition processing on a first video segment associated with the start of the first motion event candidate. Initiating the event recognition processing further includes: determining a motion track of a first object identified in the first video segment; generating a representative motion vector for the first motion event candidate based on the motion track of the first object; and sending the representative motion vector for the first motion event candidate to an event categorizer, where the event categorizer assigns a respective motion event category to the first motion event candidate based on the representative motion vector of the first motion event candidate. 1. A method of processing a video stream , comprising: obtaining a profile of a motion pixel count for a current frame sequence in the video stream;', 'in response to determining that the obtained profile meets a predetermined trigger criterion, determining that the current frame sequence includes a motion event candidate;', 'identifying a beginning time for a portion of the profile meeting the predetermined trigger criterion; and', 'designating the identified beginning time to be the start of the first motion event candidate; and, 'processing the video stream to detect a start of a first motion event candidate in the video stream, wherein processing comprisesin response to detecting the start of the first motion event candidate in the video stream, initiating event recognition processing on a first video segment associated with the start of the first motion event candidate.2. The method of claim 1 , wherein determining that the obtained profile meets the predetermined trigger criterion includes determining that the motion pixel count satisfies a threshold motion pixel count.3. ...

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26-01-2017 дата публикации

IMAGE PROCESSING APPARATUS AND CONTROL METHOD THEREOF, IMAGING DEVICE AND CONTROL METHOD THEREOF

Номер: US20170026580A1
Автор: Gyotoku Takashi
Принадлежит:

An imaging device includes an angular velocity sensor for detecting an angular velocity of shake and a motion vector detection unit for detecting a motion vector of an object from a plurality of images successively imaged by an imaging element. A frame rate change unit changes a value of a frame rate related to an image used to detect the motion vector of the object according to the angular velocity of shake of the imaging device. The object angular velocity calculation unit calculates an angular velocity of an object with respect to the imaging device based on the angular velocity of shake of the imaging device and the motion vector of the object. A panning controller performs control to reduce a difference between the angular velocity of the object and the angular velocity of shake of the imaging device using drive control of a shift lens group. 1. An image processing apparatus comprising:an acquisition unit configured to acquire an angular velocity of panning of an imaging device detected by an angular velocity sensor and a motion vector of an object detected from a plurality of successively imaged image data;a decision unit configured to decide a value of a frame rate of an image used to detect the motion vector; anda calculation unit configured to calculate an angular velocity of the object with respect to the imaging device from the angular velocity of the panning and the motion vector of the object,wherein the decision unit decides the value of the frame rate corresponding to the angular velocity of the panning and the acquisition unit acquires the motion vector of the object detected from the plurality of the image data imaged at the frame rate decided by the decision unit.2. The image processing apparatus according to claim 1 , wherein claim 1 , if the angular velocity of the panning is large claim 1 , the decision unit changes the frame rate to a larger value than a case in which the angular velocity of the panning is small.3. The image processing ...

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29-01-2015 дата публикации

FLICKER DETECTION METHOD AND FLICKER DETECTION APPARATUS

Номер: US20150029360A1
Принадлежит: FUJITSU LIMITED

The present invention discloses a flicker detection method and a flicker detection apparatus. The method includes: calculating the mean values of selected rows of image frames to constitute a mean value vector; calculating a differential vector between the mean value vectors of a current frame and a previous frame; calculating a DC-free difference vector; building a first square wave and a second square wave, and a third square wave and a fourth square wave; calculating a first frequency reference value; calculating a second frequency reference value; and if the difference between the first and second frequency reference values is above a threshold, then it is determined that flicker is present in the current frame; otherwise, it is determined that no flicker is present. 1. A flicker detection method of detecting flicker in a sequence of image frames , the method comprising:calculating mean values of selected rows of the image frames, the calculated mean values constituting a mean value vector mean_row(k) in an order of the rows;calculating a differential vector diff_frame(k) between the mean value vector mean_row(k) of a current frame and the mean value vector mean_row(k−1) of a previous frame;calculating a DC-free difference vector diff_mean_row(k) by subtracting a direct current component of the differential vector diff_frame(k) from respective elements of the differential vector diff_frame(k);building a first square wave and a second square wave with a first frequency and phases differing by 90 degrees, and a third square wave and a fourth square wave with a second frequency different from the first frequency and phases differing by 90 degrees, each of the first to the fourth square waves having a specific number of elements per cycle and a same length as the DC-free difference vector diff_mean_row(k);calculating a sum of an absolute value of a dot product of the DC-free difference vector diff_mean_row(k) and the first square wave and the absolute value of the ...

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05-02-2015 дата публикации

Impact time from image sensing

Номер: US20150035990A1
Принадлежит: Sick IVP AB

Impact time between an image sensing circuitry and an object relatively moving at least partially towards, or away from, the image sensing circuitry can be computed. Image data associated with a respective image frame of a sequence (1 . . . N) of image frames sensed by said image sensing circuitry and which image frames are imaging said object can be received. For each one (i) of multiple pixel positions, a respective duration value (f(i)) indicative of a largest duration of consecutively occurring local extreme points in said sequence (1 . . . N) of image frames can be computed. A local extreme point is present in a pixel position (i) when an image data value of the pixel position (i) is a maxima or minima in relation to image data values of those pixel positions that are closest neighbours to said pixel position (i).

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02-02-2017 дата публикации

METHODS FOR GENERATING HDR (HIGH DYNAMIC RANGE) IMAGES AND APPARATUSES USING THE SAME

Номер: US20170034414A1
Автор: WANG Xu
Принадлежит:

A method for generating HDR (High Dynamic Range) images, performed by a processing unit, is introduced to at least contain: acquiring a frame 0 and a frame 1; calculating a first MV (Motion Vector) between the frame 0 and the frame 1; acquiring a frame 2; predicting a second MV between the frame 0 and the frame 2 according to the first MV, a time interval between shooting moments for the frames 0 and 1 and a time interval between shooting moments for the frames 0 and 2; generating a first MD (Motion Detection) matrix comprising a plurality of first MD flags according to the second MV; and fusing the frame 0 with the frame 2 according to the first MD flags. 1. A method for generating HDR (High Dynamic Range) images , performed by a processing unit , the method comprising:acquiring a frame 0 and a frame 1;calculating a first MV (Motion Vector) between the frame 0 and the frame 1;acquiring a frame 2;predicting a second MV between the frame 0 and the frame 2 according to the first MV, a time interval between shooting moments of the frames 0 and 1 and a time interval between shooting moments of the frames 0 and 2;generating a first MD (Motion Detection) matrix comprising a plurality of first MD flags according to the second MV; andfusing the frame 0 with the frame 2 according to the first MD flags.2. The method of claim 1 , further comprising:calculating a plurality of pixel weights of the frame 0;expanding the frame 0 to HDR (High Dynamic Range); andexpanding the frame 2 to HDR,wherein the step for fusing the frame 0 with the frame 2 according to the first MD flags further comprises:fusing the expanded frame 0 with the expanded frame 2 according to the first MD flags and the pixel weights.3. The method of claim 2 , wherein the fusion of the expanded frame 0 with the expanded frame 2 is calculated using an Equation:{'br': None, 'i': MD', 'MD', 'W, 'sub': 'p', 'Final_fusion_factor=_flag_0×1.0+(1−_flag_0)×; and'}{'br': None, 'Final_fusion_pixel=pixel_0×Final_fusion_factor+ ...

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01-05-2014 дата публикации

Image processing apparatus and image processing method

Номер: US20140119607A1
Принадлежит: Sony Corp

An image processing apparatus includes: a data processing section which processes input image data and obtains output image data; a face detecting section which detects a face image on the basis of the input image data and obtains information about a face image region in which the face image exists; and a processing controller which controls the process of the data processing section on the basis of the information about the face image region obtained in the face detecting section.

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12-02-2015 дата публикации

IMAGE PROCESSING DEVICE, IMAGE PROCESSING CHIP AND IMAGE PROCESSING METHOD

Номер: US20150042879A1
Принадлежит:

An image processing device for processing an image signal is provided. The image processing device includes a circuit board, a slot and an image processing module. The slot, disposed on the circuit board, is to be plugged in by either a first connector corresponding to a first image interface format or a second connector corresponding to a second image interface format. The image processing module, disposed on the circuit board and coupled to the slot, detects the image signal inputted from either the first connector or the second connector to determine a target image interface format, and processes the image signal by an image processing method corresponding to the target image interface format. 1. An image processing device , configured to process an image signal , comprising:a circuit board;a slot, disposed on the circuit board, to be plugged in by either a first connector corresponding to a first image interface format or a second connector corresponding to a second image interface format; andan image processing module, disposed on the circuit board and coupled to the slot, configured to detect the image signal inputted from either the first connector or the second connector to determine a target image interface format, and to process the image signal by an image processing method corresponding to the target image interface format.2. The image processing device according to claim 1 , wherein the first image interface format is High-Definition Multimedia Interface (HDMI) format claim 1 , and the second image interface format is DisplayPort interface format.3. The image processing device according to claim 2 , wherein when the image processing module detects that the image signal provides a stable voltage as a voltage source at a predetermined pin of the slot claim 2 , the image processing module determines the target image interface format as HDMI format.4. The image processing device according to claim 2 , wherein when image processing module detects that the ...

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12-02-2015 дата публикации

VIDEO DISPLAY CONTROL DEVICE

Номер: US20150042884A1
Принадлежит:

A video display control device includes a video signal processing section that corrects a video signal and outputs a video signal after correction to a display, and a backlight controlling section that controls a light emission amount of a backlight. A control data generating section allocates to a low gradation region of the video signal a high gradation region dynamic range of the video signal in which a video signal corresponding to a black band region is excluded. The backlight controlling section controls a light emission luminance of the backlight so as to cancel out an increase or a decrease in the mean luminance of the video displayed on a screen.

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09-02-2017 дата публикации

VIDEO PROCESSING METHOD AND VIDEO PROCESSING DEVICE

Номер: US20170041640A1
Автор: Yang Ya-Min, Zhao Shao-Hai
Принадлежит:

A video processing method and a video processing device are provided. The video processing method includes the following steps: A raw video is obtained. A noise level of the raw video is obtained. A bit rate or a resolution is adjusted according to the noise level. The raw video is compressed according to the bit rate and the resolution. 1. A video processing method , comprising:obtaining a raw video;obtaining a noise level of the raw video;adjusting a bit rate or a resolution according to the noise level; andcompressing the raw video according to the bit rate and the resolution.2. The video processing method according to claim 1 , wherein in the step of adjusting the bit rate or the resolution claim 1 , both of the bit rate and the resolution are adjusted.3. The video processing method according to claim 1 , further comprising:determining whether the noise level is changed; andadjusting the bit rate or the resolution if the noise level is changed.4. The video processing method according to claim 1 , further comprising:obtaining a motion level of the raw video;wherein in the step of adjusting the bit rate or the resolution, the bit rate or the resolution is adjusted according to the noise level and the motion level.5. The video processing method according to claim 1 , further comprising:obtaining an object detecting signal;wherein in the step of adjusting the bit rate or the resolution, the bit rate or the resolution is adjusted according to the noise level and the object detecting signal.6. A video processing device claim 1 , comprising:a capturing unit for capturing a raw video;a noise analyzing unit for obtaining a noise level of the raw video;an adjusting unit for adjusting a bit rate or a resolution according to the noise level; anda compressing unit for comprising the raw video according to the bit rate and the resolution.7. The video processing device according claim 6 , wherein the adjusting unit is for adjusting both of the bit rate and the resolution.8. ...

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24-02-2022 дата публикации

System and Method for Frame Rate Up-Conversion of Video Data

Номер: US20220060656A1

Embodiments of the disclosure provide systems and methods for performing frame rate up-conversion of video data including a sequence of image frames. The method may include determining a set of motion vectors of a target frame relative to a plurality of reference frames. The target frame is to be generated and interpolated into the sequence of image frames. The method may further include performing a motion vector classification on the set of motion vectors to generate a target object map for the target frame. The method may additionally include projecting the target object map onto the plurality of reference frames to generate a plurality of reference object maps based on the set of motion vectors. The method may additionally include detecting an occlusion area in the target frame based on the set of motion vectors, the target object map, and the plurality of reference object maps. 1. A computer-implemented method for performing frame rate up-conversion of video data including a sequence of image frames , comprising:determining, by a video processor, a set of motion vectors of a target frame relative to a plurality of reference frames, wherein the target frame is to be generated and interpolated into the sequence of image frames;performing, by the video processor, a motion vector classification on the set of motion vectors to generate a target object map for the target frame;projecting, by the video processor, the target object map onto the plurality of reference frames to generate a plurality of reference object maps based on the set of motion vectors; anddetecting, by the video processor, an occlusion area in the target frame based on the set of motion vectors, the target object map, and the plurality of reference object maps.2. The method of claim 1 , wherein performing the motion vector classification on the set of motion vectors to generate the target object map for the target frame comprises:performing the motion vector classification on the set of motion ...

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07-02-2019 дата публикации

IMAGE PICK-UP APPARATUS AND CONTROL METHOD

Номер: US20190045126A1
Автор: Takeuchi Kenji
Принадлежит:

An image pick-up apparatus detects shake and the like applied to an image pick-up apparatus by a vibration sensor. A motion vector detection unit detects a motion vector of an image in an image signal by an imaging unit. A feature point tracking unit calculates coordinate values of a subject on an imaging screen that changes over time on the basis of the motion vector. A feature coordinate map and a position and attitude estimation unit estimates a position and attitude of the image pick-up apparatus and a positional relationship including a depth between the subject and the image pick-up apparatus based on an output of the vibration sensor and the coordinate values of the subject. A computation unit calculates a control amount of image blur correction using feature points of a main subject, a feature coordinate map and position or attitude information of the image pick-up apparatus. A correction lens is driven according to an output of a target position calculation unit and a shake correction operation of the image pick-up apparatus is performed. 1. An image pick-up apparatus that acquires an image signal by an imaging unit , comprising:a memory; andone or more processors, wherein the processor functions as the following units according to a program stored in the memory:a first acquisition unit configured to acquire first information indicating shake of the image pick-up apparatus detected by a shake detection unit:a second acquisition unit configured to acquire second information indicating a movement of a subject detected in an image signal by the imaging unit;a tracking unit configured to calculate coordinate values of the subject on an imaging screen using the second information and track feature points;an estimation unit configured to estimate a position and/or attitude of the image pick-up apparatus and a positional relationship including a depth between the subject and the image pick-up apparatus from the first information and the coordinate values of the ...

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07-02-2019 дата публикации

VIDEO PROCESSING IN VIRTUAL REALITY ENVIRONMENTS

Номер: US20190045140A1
Принадлежит:

Apparatus, systems, articles of manufacture, and methods for processing video in virtual reality environments are disclosed. An example virtual reality display device to process video in a virtual reality environment includes a video analyzer to detect unsmooth video data in the stream of video data and a video library to provide alternative video data. The example device also includes a selector to receive the stream of video data, an indication of the unsmooth video data, and the alternative video data. The selector is to select the alternative video data to replace the unsmooth video data based on the indication of the unsmooth video data and output a modified stream of video data including the stream of video data with the alternative video data in place of the unsmooth video data. The example device also includes an output display to display the modified stream of video data. 1. A virtual reality display device to process video in a virtual reality environment , the device comprising:a video analyzer to detect unsmooth video data in a stream of video data;a video library to provide alternative video data; receive the stream of video data, an indication of the unsmooth video data, and the alternative video data,', 'select the alternative video data to replace the unsmooth video data based on the indication of the unsmooth video data, and', 'output a modified stream of video data including the stream of video data with the alternative video data in place of the unsmooth video data; and, 'a selector toan output display to display the modified stream of video data.2. A device as defined in claim 1 , wherein the alternative video data is to create a solid color display when displayed.3. A device as defined in claim 1 , wherein the video analyzer is to detect unsmooth video based on comparing a number of video packets arriving in-time in the video stream per a time interval with an estimated number of video packets expected in that time interval.4. A device as ...

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18-02-2016 дата публикации

USING DYNAMIC MODE DECOMPOSITION FOR REAL-TIME BACKGROUND/FOREGROUND SEPARATION IN VIDEO

Номер: US20160050343A1
Принадлежит: UNIVERSITY OF WASHINGTON

The technique of dynamic mode decomposition (DMD) is disclosed herein for the purpose of robustly separating video frames into background (low-rank) and foreground (sparse) components in real-time. Foreground/background separation is achieved at the computational cost of just one singular value decomposition (SVD) and one linear equation solve, thus producing results orders of magnitude faster than robust principal component analysis (RPCA). Additional techniques, including techniques for analyzing the video for multi-resolution time-scale components, and techniques for reusing computations to allow processing of streaming video in real time, are also described herein. 1. A computer-implemented method of separating foreground information and background information in video data , the method comprising:generating, by a video sensor, video data that includes a set of video frames;determining a first window within the video data, wherein the first window indicates a portion to be analyzed of the video data; calculating, by a computing device, a singular value decomposition (SVD) of data within the first window;', 'generating a matrix à using the results of the SVD, wherein à represents a K×K projection of a matrix A onto proper orthogonal decomposition (POD) modes, and wherein the matrix A represents changes between video frames within the first window;', 'performing an eigendecomposition of matrix à to determine an eigenvector matrix W and a diagonal matrix of eigenvalues D; and', 'using the eigenvectors W and eigenvalues D to generate indications of at least one of foreground information and background information in the first window; and, 'detecting foreground information and background information within the first window of video data bygenerating an output based on at least one of the indication of foreground information and the indication of background information in the first window;wherein the first window of video data is represented by a matrix X that ...

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26-02-2015 дата публикации

Systems and methods of saving power by adapting features of a device

Номер: US20150055008A1
Автор: Khosro Mohammad Rabii
Принадлежит: Qualcomm Inc

Present embodiments contemplate systems, apparatus, and methods to reduce power consumption of devices. Particularly, present embodiments contemplate modifying parameters of embedded components, including imaging sensors and electronic displays, to reduce power consumption. By modifying parameters of these components in an intelligent manner, the full capabilities of these components are available when needed by a device user, while power is conserved by reducing the capabilities of the components when those capabilities are not needed to support a current use of the device.

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25-02-2016 дата публикации

SYSTEM AND METHOD FOR ESTIMATING A MOVE USING OBJECT MEASUREMENTS

Номер: US20160055506A1
Принадлежит:

Embodiments of the present disclosure provide a computer-implemented method for estimating a move, the method comprising: identifying at least one object of interest from a video feed of an environment, wherein the video feed includes coordinate data for three dimensions of space; estimating a plurality of measurements of the at least one object of interest by reference to the coordinate data and the video feed of the environment; generating an inventory of each identified object of interest and corresponding plurality of measurements; and calculating one of an estimated moving time and an estimated moving cost based on the generated inventory. 1. A computer-implemented method for estimating a move , the method comprising:identifying at least one object of interest from a video feed of an environment, wherein the video feed includes coordinate data for three dimensions of space;estimating a plurality of measurements of the at least one object of interest by reference to the coordinate data and the video feed of the environment;generating an inventory of each identified object of interest and corresponding plurality of measurements; andcalculating one of an estimated moving time and an estimated moving cost based on the generated inventory.2. The method of claim 1 , further comprising verifying the estimated plurality of measurements in response to a voice input.3. The method of claim 1 , wherein the coordinate data is derived from one of a three-dimensional simulation of the environment claim 1 , video recorded with a 3D camera claim 1 , and applying an image recognition algorithm to the video feed of the environment.4. The method of claim 1 , further comprising recording a video file to create the video feed of the environment claim 1 , and placing a call to a remote user to provide an instruction for recording the video file.5. The method of claim 1 , wherein one of the estimated moving time and the estimated moving cost is further based on one of a location of ...

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22-02-2018 дата публикации

IMAGE PROCESSING APPARATUS THAT DIVIDES AND PROCESSES AN IMAGE SIGNAL, CONTROL METHOD THEREOF, AND STORAGE MEDIUM

Номер: US20180054566A1
Автор: Yaguchi Hiroyuki
Принадлежит:

An image processing apparatus comprises: a first processing circuit which carries out image processing on a first image signal obtained from image signals forming a single image; a second processing circuit which carries out the image processing on a second image signal obtained from the image signals forming the image; and a control circuit which controls communication of image signals between the first processing circuit and the second processing circuit, wherein the first image signal and the second image signal do not have overlap region; and wherein the control circuit controls the communication for transferring an image signal of a region of the image additionally required when the first processing circuit carries out the image processing on the first image signal from the second processing circuit to the first processing circuit. 1. An image processing apparatus comprising:a first processing circuit which carries out image processing on a first image signal obtained from image signals forming a single image;a second processing circuit which carries out the image processing on a second image signal obtained from the image signals forming the image; anda control circuit which controls communication of image signals between the first processing circuit and the second processing circuit in accordance with progress of the image processing carried out by the first processing circuit and the second processing circuit,wherein the first image signal and the second image signal are image signals obtained by dividing the image into regions such that the regions of the image do not overlap; andwherein the control circuit controls the communication such that an image signal of a region of the image additionally required when the first processing circuit carries out the image processing on the first image signal is transferred from the second processing circuit to the first processing circuit.2. The apparatus according to claim 1 ,wherein the image processing includes ...

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14-02-2019 дата публикации

IMAGE CAPTURING DEVICE AND CONTROL METHOD

Номер: US20190052804A1
Автор: Maruhashi Naoka
Принадлежит:

An image capturing device includes a setting unit configured to set, based on a type of metadata to be added to a captured image, a generation frequency of the metadata, and a control unit configured to perform control to generate the metadata at the generation frequency set by the setting unit. 1. An image capturing device comprising:a setting unit configured to set, based on a type of metadata to be added to a captured image, a generation frequency of the metadata; anda control unit configured to perform control to generate the metadata at the generation frequency set by the setting unit.2. The image capturing device according to claim 1 , further comprising:a generation unit configured to generate the metadata,wherein the control unit controls generation of the metadata by the generation unit.3. The image capturing device according to claim 1 , further comprising:an analysis unit configured to conduct image analysis on the captured image,wherein the setting unit sets the generation frequency, further based on a result of the image analysis.4. The image capturing device according to claim 3 ,wherein the analysis unit specifies a size of an object in the captured image, andwherein in a case where the size of the object is a threshold or more and target metadata is a predetermined type of metadata, the setting unit sets, as a generation frequency of the target metadata, a value that is larger than generation frequencies of metadata other than the preset type of metadata.5. The image capturing device according to claim 3 ,wherein the analysis unit specifies whether an object in the captured image is a moving object, andwherein in a case where the object is a moving object, the setting unit sets, as a generation frequency of metadata about the object, a value that is larger than a generation frequency of metadata about the object which is not a moving object.6. The image capturing device according to claim 3 ,wherein the analysis unit specifies identification ...

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15-05-2014 дата публикации

WIRELESS VIDEO/AUDIO DATA TRANSMISSION SYSTEM HAVING I-FRAME ONLY GOP STRUCTURE

Номер: US20140132837A1
Автор: Dai Wenxiang, Ye Zhou
Принадлежит: CYWEE GROUP LIMITED

A wireless video/audio transmission system includes a transmitter configured to wirelessly transmit video/audio data streams The transmitter has an encoder module for generating the data streams including video data, audio data, and timing information. The video data includes only I-frames. The transmission system includes a receiver with a decoder module including a decoder IC, an SRAM, and a PLL circuit. The decoder IC detects the timing information, adjusts the PLL circuit to synchronize with a reference frequency, and decodes the data streams using the SRAM. Alternatively, the receiver includes a decoder module with a decoder IC and an SRAM. The decoder IC detects the timing information, generates a beacon pulse to be transmitted wirelessly to the encoder module, and the encoder module receives the beacon pulse, adjusts the PLL circuit incorporated within the encoder module accordingly so as to synchronize with the decoder module. 1. A wireless video/audio transmission system , comprising:a transmitter configured to wirelessly transmit video/audio data streams, the transmitter comprises an encoder module for generating the video/audio data streams, the video/audio data streams include video data, audio data, and timing information, the video data includes only I-frames;a receiver configured to wirelessly receive the video/audio data streams, the receiver comprises a decoder module, the decoder module comprises a decoder IC, an SRAM (Static Random-Access Memory) disposed on the decoder IC, and a PLL (Phase-Locked Loop) circuit,wherein the decoder IC detects the timing information in the video/audio data streams, adjusts the PLL circuit to synchronize with a reference frequency of the encoder module, and decodes the video/audio data streams using the SRAM.2. The wireless video/audio transmission system of claim 1 , wherein the encoder uses constant titrate (CBR) rate control to generate the video/audio data streams.3. The wireless video/audio transmission system ...

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23-02-2017 дата публикации

VIDEO PROCESSING METHOD, VIDEO PROCESSING CIRCUIT, LIQUID CRYSTAL DISPLAY, AND ELECTRONIC APPARATUS

Номер: US20170054879A1
Принадлежит: SEIKO EPSON CORPORATION

A video processing circuit detects a risk boundary, which a portion of the boundary between a dark pixel and a bright pixel in an image represented by a video signal Vid-in, and is determined by a tilt azimuth of liquid crystal molecules, from the boundary, and corrects a video signal corresponding to at least one of the dark pixel and the bright pixel which is contiguous to the detected risk boundary in at least one field of a plurality of fields constituting one frame such that a period in which the risk boundary is present in one frame period is shortened. 1. A video processing method which corrects a video signal specifying a voltage to be applied to a liquid crystal element for each pixel and defines the voltage to be applied to the liquid crystal element on the basis of the corrected video signal , the method comprising:a detection step of detecting a first pixel whose applied voltage specified by the video signal falls below a first voltage and a second pixel whose applied voltage exceeds a second voltage higher than the first voltage, the second pixel being adjacent to the first pixel; anda correction step of correcting the video signal, which specifies a voltage to be applied to a liquid crystal element corresponding to at least one of the first and second pixels such that the voltage to be applied to the liquid crystal element in at least one field of a plurality of fields constituting one frame is different from the voltage to be applied to the liquid crystal element in other field of the plurality of fields constituting one frame.2. The method according to claim 1 ,wherein, in the correction step, the video signal which specifies a voltage to be applied to the liquid crystal element corresponding to the first pixel or liquid crystal elements corresponding to r (where r is an integer of 2 or more) continuous first pixels on an opposite side of the second pixel from the first pixel is corrected to a video signal which specifies the first voltage or higher ...

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05-03-2015 дата публикации

VIDEO SIGNAL PROCESSING DEVICE AND VIDEO SIGNAL PROCESSING METHOD

Номер: US20150062435A1
Автор: Lee Kiho
Принадлежит: SAMSUNG ELECTRONICS CO., LTD.

A video signal processing device may include a signal converter configured to generate a video output signal based on a video input signal and a reference signal, a reference signal generator configured to generate the reference signal. The reference signal may be adjusted to accommodate changes in the video input signal. 1. A video signal processing device comprising:a signal converter configured to generate a video output signal based on a video input signal and a reference signal; anda reference signal generator configured to generate the reference signal that is responsive to a level change of the video input signal.2. The video signal processing device as set forth in claim 1 ,wherein the signal converter includes an analog-to-digital converter configured to receive a differential signal, andwherein the differential signal is constituted by the video input signal and the reference signal.3. The video signal processing device as set forth in claim 1 , further comprising an offset controller configured to detect a change in the level of the video input signal provided to a position in which an observation signal included in the video output signal is outputted based on the observation signal and a signal corresponding to the position in which the observation signal is outputted claim 1 , and to generate an offset signal when the level of the video input signal changes.4. The video signal processing device as set forth in claim 3 , wherein the signal converter generates the observation signal based on a signal in a back porch interval of the video input signal.5. The video signal processing device as set forth in claim 3 , wherein the offset controller samples the video output signal claim 3 , according to a clock signal claim 3 , to detect a change in the level of the video input signal.6. The video signal processing device as set forth in claim 3 , wherein the offset controller detects a change in the level of the video input signal based on whether there is ...

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20-02-2020 дата публикации

IMAGE PROCESSING DEVICE, IMAGE DISPLAY DEVICE, AND PROGRAM

Номер: US20200059574A1
Принадлежит: EIZO Corporation

Provided is an image processing device, image display device, and program that allow an image captured by an imaging device not having a vibration suppression function or an image whose vibration has been suppressed incompletely to be displayed on a display device with the vibration suppressed. The image processing device includes a motion estimator configured to estimate the amount of motion of an object between a first image and a second image later than the first image and a motion compensator configured to perform a conversion process on the second image so that vibration of the object between the first image and the second image is suppressed, on the basis of the amount of motion of the object. The motion estimator has a first estimation mode in which the amount of motion of the object is estimated in a predetermined search area and a second estimation mode in which the amount of motion of the object is estimated in a larger area than the search area in the first estimation mode. 1. An image processing device comprising:a motion estimator configured to estimate the amount of motion of an object between a first image and a second image later than the first image; anda motion compensator configured to perform a conversion process on the second image so that vibration of the object between the first image and the second image is suppressed, on the basis of the amount of motion of the object, whereinthe motion estimator has a first estimation mode in which the amount of motion of the object is estimated in a predetermined search area and a second estimation mode in which the amount of motion of the object is estimated in a larger area than the search area in the first estimation mode,when a predetermined criterion is satisfied, the motion compensator performs the conversion process on the basis of the amount of motion estimated in the second estimation mode, andwhen the redetermined criterion is not satisfied the motion compensator performs the conversion process ...

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01-03-2018 дата публикации

VIDEO PROCESSING DEVICE

Номер: US20180063385A1
Принадлежит: FUJITSU TEN LIMITED

Provided is a video processing device that generates a display video signal to be supplied to a liquid crystal display having a liquid crystal that is driven by a frame inversion scheme and includes a control microcomputer and a video signal processor. The control microcomputer controls a data enable signal such that a display invalid section having a predetermined number of fields is set for an interlace video signal at a predetermined period based on a vertical synchronization signal included in the interlace video signal input from outside. The video signal processor generates the display video signal by setting the display invalid section for the interlace video signal based on the data enable signal and outputs the display video signal to the liquid crystal display. 1. A video processing device that generates a display video signal to be supplied to a liquid crystal display having a liquid crystal that is driven by a frame inversion scheme , the video processing device comprising:a control microcomputer that controls a data enable signal such that a display invalid section having a predetermined number of fields is set for an interlace video signal at a predetermined period based on a vertical synchronization signal included in the interlace video signal input from outside; anda video signal processor that generates the display video signal by setting the display invalid section for the interlace video signal based on the data enable signal and outputs the display video signal to the liquid crystal display.2. The video processing device according to claim 1 , further comprising:a temperature detector that detects a temperature of the liquid crystal display,wherein the control microcomputer adjusts the predetermined period based on a detection result of the temperature detector.3. The video processing device according to claim 2 ,wherein the control microcomputer adjusts the predetermined period to gradually shortened as the temperature increases.4. The video ...

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01-03-2018 дата публикации

METHOD AND APPARATUS FOR CORRECTING FIXED PATTERN NOISE OF AN INFRARED IMAGE

Номер: US20180063454A1
Автор: Olsson Stefan
Принадлежит:

A method and a thermal imaging device for correcting fixed pattern noise of in a video sequence of thermal images captured using a thermal imaging system is provided. The method comprises: receiving a sequence of thermal images captured using a thermal imaging system; calculating a thermal image average of a plurality of the received thermal images; calculating pixel difference values between a received thermal image and the thermal image average; evaluating the pixel difference values in relation to an updating condition; calculating fixed pattern noise correction terms for the pixel difference values for which the updating condition is fulfilled; and correcting pixel values of a subsequently received thermal image with the fixed pattern noise correction terms to generate a sequence of thermal images having corrected fixed pattern noise. 1. A method of correcting fixed pattern noise in a video sequence of thermal images captured using a thermal imaging system , comprising:receiving a sequence of thermal images captured using a thermal imaging system;calculating a thermal image average of a plurality of the received thermal images;calculating pixel difference values between a received thermal image and the thermal image average;evaluating the pixel difference values in relation to an updating condition;calculating fixed pattern noise correction terms for the pixel difference values for which the updating condition is fulfilled; andcorrecting pixel values of a subsequently received thermal image with the fixed pattern noise correction terms to generate a fixed pattern noise-corrected thermal image.2. The method of claim 1 , wherein the pixel difference values are calculated between pixels of a set of pixels of the received thermal image and pixels of a corresponding set of pixels of the thermal image average.3. The method of claim 1 , wherein the thermal image average is calculated as one or more of a temporal and/or spatial image average.4. The method of claim 1 , ...

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12-03-2015 дата публикации

IMAGE-PICKUP APPARATUS, LENS UNIT, CONTROL METHOD OF THE IMAGE-PICKUP APPARATUS, CONTROL METHOD OF THE LENS UNIT, AND IMAGE-PICKUP SYSTEM

Номер: US20150070567A1
Принадлежит:

An image-pickup apparatus to which a lens unit that includes an image-pickup optical system including a focus lens is attachable includes an image sensor configured to photoelectrically convert an object image formed via the lens unit that has been attached, and to generate an image signal, and a controller configured to generate information on driving of the focus lens in the lens unit based upon the image signal and to provide focus control, the controller communicating data with the lens unit, wherein the controller transmits information on a driving target position of the focus lens to the lens unit in a first control, and transmits information on a driving direction and driving speed of the focus lens to the lens unit in a second control different from the first control. 1. An image-pickup apparatus to which a lens unit that includes an imaging optical system including a focus lens is attachable , the image-pickup apparatus comprising:an image sensor configured to photoelectrically convert an object image formed via the lens unit that has been attached, and to generate an image signal; anda controller configured to generate information on driving of the focus lens in the lens unit based upon the image signal and to provide focus control, the controller communicating data with the lens unit in synchronization with a vertical synchronizing signal by a fixed-length packet communication,wherein the controller instructs the lens unit on a defocus amount on an image plane corresponding to a driving amount of the focus lens when a command mode is a first mode, and instructs the lens unit on a driving direction and driving speed of the focus lens when the command mode is a second mode different from the first mode, andwherein information on the defocus amount on the image plane corresponding to the driving amount of the focus lens is set in a first data area included in data transmitted in the fixed-length packet communication when the command mode is the first mode, ...

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12-03-2015 дата публикации

SYNCHRONIZATION OF VIDEO AND REAL-TIME DATA COLLECTION STREAMS

Номер: US20150070583A1
Принадлежит:

System and method for synchronizing a video stream (C) with a real-time data collection stream (A) of the same and simultaneous physical setting comprising a time- or frame-reference (t) module () from the data processor () responsible for collecting the data stream (A) from the physical setting, a generator () of an encoded video stream (B′), in particular a barcode, a display (), a camera () for collecting the video stream (C) from the physical setting and in the same video stream (C/B′) of said physical setting, a decoder () of the visually encoded time- or frame-reference (B′), connected to receive the filmed encoded video stream (C) with encoded image patterns (B′) and obtain the visually encoded time- or frame-reference (t′), and a synchronization module () which outputs the synchronized streams (A′+C) of the synchronized video stream (C) and the synchronized real-time data collection stream (A′) of said physical setting. 1. Method for synchronizing a video stream with a real-time data collection stream of the same and simultaneous physical setting comprising the steps of:{'b': 2', '8', '2, 'a. providing a time- or frame-reference (t) by the data processor () responsible for collecting the data stream (A) from the physical setting, or by another data processor () in temporal synchronization with the data processor () responsible for collecting the data stream (A) from the physical setting;'}{'b': '3', 'b. visually encoding () said time- or frame-reference (t) into an encoded image pattern and generating an encoded video stream (B′) comprising said encoded image pattern;'}{'b': '4', 'c. displaying () said encoded video stream (B′);'}{'b': '5', 'd. filming () said displayed encoded video stream (B′) by a camera responsible for collecting the video stream (C) from the physical setting and in the same video stream of said physical setting (C/B′);'}{'b': '6', 'e. decoding () said encoded image pattern from the filmed encoded video stream (C/B′) and obtaining the ...

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12-03-2015 дата публикации

Method and arrangement for analysing the behaviour of a moving object

Номер: US20150071497A1
Автор: Markus Kuusisto
Принадлежит: Sensisto Oy

The detected movements of an object are analyzed. Each location record includes coordinates of a detected or assumed location of the object and time information. For a number of location records, there is calculated a location-record-specific descriptor value that becomes the more significant the more densely there are other location records around the location record for which the descriptor value is calculated. After selecting a location record that has the most significant descriptor value, those other location records are found that according to their time information are the latest and earliest in a certain environment. The analysis result is that the object stopped at the coordinates of the selected location record for a stopping time calculated from the time information of the latest and earliest location records.

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29-05-2014 дата публикации

CALCULATING APPARATUS, CALCULATING METHOD, AND NON-TRANSITORY COMPUTER-READABLE STORAGE MEDIUM STORING COMPUTER-EXECUTABLE INSTRUCTIONS

Номер: US20140146236A1
Автор: Oue Akihiro
Принадлежит: KABUSHIKI KAISHA TOSHIBA

According to one embodiment, a calculating apparatus includes, a register module includes a plurality of registers configured to store a plurality of values, a controller configured to specify a plurality of registers including a register to which input data is written, and a calculator configured to calculate a predetermined combination of the values of the specified registers. 1. A calculating apparatus comprising:a register module comprising a plurality of registers configured to store a plurality of values;a controller configured to specify a plurality of registers including a register to which input data is written; anda calculator configured to calculate a predetermined combination of the values of the specified registers.2. The calculating apparatus of claim 1 , wherein the calculator calculates a predetermined combination of the values of the registers and the values of the different registers.3. The calculating apparatus of claim 2 , wherein the controller specifies the registers by a first command claim 2 ,the calculator writes, to the register of the register module, a first calculation result based on the register specified by the first command,the controller specifies, by a second command, the registers including the register to which the first calculation result is written, andthe calculator outputs a second calculation result based on the register specified by the second command.4. The calculating apparatus of claim 1 , wherein the register module comprisesa first register configured to store a value Ra.x, a value Ra.y, a value Ra.z, and a value Ra.w, a second register configured to store a value Rb.x, a value Rb.y, a value Rb.z, and a value Rb.w, and a third register configured to store a value Rc.w, andthe calculator calculates Ra.x·Rc.w+Ra.y·Rb.x+Ra.z·Rb.y+Ra.w·Rb.z+Rb.w when the first register, the second register, and the third register are specified.5. The calculating apparatus of claim 2 , wherein the register module comprisesa first register ...

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28-02-2019 дата публикации

Video interface conversion apparatus and operation method thereof

Номер: US20190068843A1
Автор: Wen-Chi Lin
Принадлежит: NOVATEK MICROELECTRONICS CORP

A video interface conversion apparatus comprises a video interface circuit, a video clock adjustment information generation circuit and a video clock recovery circuit. The video interface circuit generates at least one original synchronization signal according to a control signal, and fetches video data from a data signal according to a video synchronization signal. The video clock adjustment information generation circuit generates video clock adjustment information and the video synchronization signal according to the original video synchronization signal and a video clock. The video clock recovery circuit receives an original clock and the video clock adjustment information, and recovers the video clock by adjusting the original clock according to the video clock adjustment information.

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28-02-2019 дата публикации

PHASE DISPARITY ENGINE WITH LOW-POWER MODE

Номер: US20190068868A1
Автор: Lee Jisoo
Принадлежит:

A method provides phase disparity data. First phase disparity data for a first image frame of a first scene is computed using a phase disparity engine of an image capture device. The method determines whether the image capture device is receiving light from a second scene that is different from the first scene and corresponds to a second image frame. The phase disparity engine discontinues computing of phase disparity data, in response to a determination that the second scene is not different from the first scene. The first phase disparity data are output in connection with the second image frame, in response to determining that the second scene is not different from the first scene. 1. A method for providing phase disparity data , comprising:computing first phase disparity data for a first image frame of a first scene using a phase disparity engine of an image capture device;determining whether the image capture device is receiving light from a second scene that is different from the first scene and corresponds to a second image frame;discontinuing computing of phase disparity data by the phase disparity engine, in response to a determination that the second scene is not different from the first scene; andoutputting the first phase disparity data in connection with the second image frame, in response to determining that the second scene is not different from the first scene.2. The method of claim 1 , further comprising operating the image capture device with a first power consumption while computing the first phase disparity data claim 1 , and operating the image capture device with a second power consumption lower than the first power consumption while computing of phase disparity is discontinued.3. The method of claim 1 , wherein a lens of the image capture device has a first position while the first phase disparity data is computed claim 1 , further comprising:resuming computation by the phase disparity engine in response to detecting that the lens of the image ...

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19-03-2015 дата публикации

IMAGE DECODING DEVICE AND METHOD THEREOF USING INTER-CODED PREDICTIVE ENCODING CODE

Номер: US20150077636A1
Принадлежит:

An image encoding device and corresponding decoding device are disclosed for achieving a high rate of compression. The encoding device includes an image conversion module that converts the direction of the images using right-left symmetry mode convention or up-down symmetry mode conversion. Encoding modules are used to encode both the unconverted and converted images. A mode selector module compares the quantity of codes in the encoded unconverted images and the quantity of codes in the encoded converted images, and selects codes that are smaller in the quantity of codes for output. 1a determination step of determining whether an partial area of the image has been converted in an up-down symmetry conversion mode to flip the partial area of the image vertically or in a right-left symmetry conversion mode to flip the partial area of the image horizontally with reference to information sent together with the signal of the image; anda decoded image creation step of creating a decoded image with executing conversion associated with a conversion mode determined in the determination step after intra-coded predicting,wherein the information includes information indicating a direction of the flip of the partial area of the image and information indicating a x-y coordinate of the flipped partial area.. A decoding method for decoding a signal of an intra-coded image, the decoding method comprising: This application is a continuation of application Ser. No. 14/295,525, filed Jun. 4, 2014, now allowed, which is a continuation of application Ser. No. 11/066,169, filed Feb. 28, 2005, now U.S. Pat. No. 8,787,456, issued Jul. 22, 2014, which claims benefit of Japanese application PCT/JP2004/006169 filed on Apr. 28, 2004, the disclosures of which are incorporated herein by reference.This invention relates to an image encoding device, an image encoding program and an image encoding method for encoding images, an image decoding device, a decoding program, and a decoding method for ...

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19-03-2015 дата публикации

MOVING IMAGE REGION DETERMINATION DEVICE AND METHOD THEREOF

Номер: US20150077638A1
Принадлежит: EIZO Corporation

A rectangular moving region is properly determined. A retainer retains an outputted moving region of time t and, at time t+1, provides it to a specified region feature detector. At time t+1, the specified region feature detector applies the moving coordinates of time t provided by the judgment unit to respective images of times t and t+1 to calculate feature data d(t) around the moving coordinates of time t and feature data d(t+1) around the moving coordinates of time t+1 and then provides the calculated data to a judgment unit. The judgment unit judges whether there is a box, based on the feature data d(t+1). 118-. (canceled)19. A method for determining boundaries of a rectangular moving image region having a rectangular external shape displayed in part of a display region on the basis of a difference between respective frames of times t and t+n , the method comprising:determining if a rectangular moving image region in the frame of time t, retaining the boundary coordinates of the rectangular moving image region; andjudging whether there is a box at the boundary coordinates of the rectangular moving image region of time t in a frame of time t+m, without using the frame of time t and, if there is a box, judging that a region specified by the boundary coordinates of the rectangular moving image region of time t is a moving region in the frame of time t+n, wherein n≧m.20. The method of claim 19 , wherein pixels are arranged in row and column directions in the display region claim 19 , and wherein the rectangular moving image region in the frame of time t is determined by:a moving unit block judgment step of dividing the display region into unit blocks each including a predetermined number of pixels and judging whether each unit block is a moving unit block having a motion;a moving column block determination step of defining, as a column block, a set of unit blocks included in a column including one of uppermost unit blocks of the unit blocks and, if one column block ...

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07-03-2019 дата публикации

SYSTEMS AND METHODS FOR GRAPHICS ADJUSTMENT BASED ON OUTPUT RESOLUTION

Номер: US20190073746A1
Автор: Greene Gregory H.
Принадлежит:

A graphics adjustment system detects the video resolution of digital video to be output by a receiving device and saves the graphics settings input by the user when the user adjusts the graphics settings on the receiving device such that the digital video being presented in the presentation device is not cut off due to overscanning. The system saves the graphics adjustment settings as the setting to use going forward for digital video of that same resolution for that particular presentation device. In this manner, the digital video output from the receiving device will not be cut off when presented on the presentation device, even when the receiving device is switching between receiving digital video programming of different resolutions from various program distributors and/or the content providers. 1. A method for video graphics adjustment comprising:detecting, by at least one processor of a receiving device, a resolution of digital video content to be output from the receiving device to a display;in response to the detecting the resolution of the digital video content to be output from the receiving device to the display, retrieving, by at least one processor of the receiving device, based on the detected resolution of the digital video content, a previously stored video graphics adjustment setting having a previously stored association with the detected resolution of the digital video content, the previously stored association being that application of the video graphics adjustment setting to digital video content having the detected resolution avoids edges of digital video frames of digital video content having the detected resolution being cut of when presented on the display; andin response to the at least one processor of the receiving device retrieving the previously stored video graphics adjustment setting having the previously stored association with the detected resolution of the digital video content to be output from the receiving device, applying, by ...

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24-03-2022 дата публикации

Image processing device and image processing system

Номер: US20220094818A1
Автор: Akira Moriya

An image processing device includes an interface and a control circuit. The interface is configured to receive input line signals in synchronization with input horizontal synchronization signals, respectively. The control circuit is configured to store line image data contained in each of input line signals in the order of reception, generate internal horizontal synchronization signals, and output internal line signals containing the line image data in the input line signals, in synchronization with the internal horizontal synchronization signals, respectively. The input line signals include a first input line signal containing first line image data, and the internal line signals include a first internal line signal containing the first line image data. A horizontal cycle of the internal horizontal synchronization signal corresponding to the first internal line signal is less than a horizontal cycle of the input horizontal synchronization signal corresponding to the first input line signal.

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26-03-2015 дата публикации

IDENTIFICATION USING VIDEO ANALYTICS TOGETHER WITH INERTIAL SENSOR DATA

Номер: US20150085111A1
Автор: LAVERY RICHARD J
Принадлежит: Symbol Technologies, Inc.

A technique for identification using video analytics together with inertial sensor data is described. The technique includes capturing video of an environment and tracking particular users in the captured video. Motion signals are received from at least one inertial sensor of at least one mobile communication device being carried by a user. The video motion of each tracked user in the captured video and the motion signals of each mobile communication device are correlated in order to associate one of the mobile communication devices with a particular tracked user in the video. 1. A method for identification using video analytics together with inertial sensor data , the method comprising:capturing video of an environment;tracking particular users in the captured video;receiving motion signals from at least one inertial sensor of at least one mobile communication device being carried by a user; andcorrelating the video motion of each tracked user in the captured video and the motion signals of each mobile communication device to associate one of the mobile communication devices with a particular tracked user in the video.2. The method of claim 1 , wherein the at least one inertial sensor includes one or more of an accelerometer and a gyroscope.3. The method of claim 1 , wherein receiving also includes receiving an identification from the mobile communication device to identify the user being tracked in the video.4. The method of claim 1 , wherein correlating includes keeping a record of video motions and motion signals over time to provide an increased confidence in correlation for longer time periods.5. The method of claim 1 , wherein correlating includes calibrating the timing of the input signals versus the captured video such that the video motion and motion signals are time-aligned.6. The method of claim 1 , further comprising:determining a location of the mobile device in the environment using a locationing system; andassociating the location with a particular ...

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12-06-2014 дата публикации

PROCESSING A VIDEO FOR SPATIAL AND TEMPORAL MAGNIFICATION WITH MINIMIZED IMAGE DEGRADATION

Номер: US20140160355A1
Принадлежит: XEROX CORPORATION

What is disclosed is a novel video processing system and method wherein a plurality of image frames of a video captured using a video camera with a spatial resolution of (M×N) in the (x, y) direction, respectively, and a temporal resolution (T) in frames per unit of time. A first and second magnification factor f, fare selected for spatial enhancement in the (x, y) direction. A third magnification factor fis selected for a desired temporal enhancement in (T). The video data is processed using a dictionary comprising high and low resolution patch cubes which are used to induce spatial and temporal components in the video where no data exists. A high resolution course video Xis generated which has an enhanced spatial resolution of (f* M)×(f*N) and an enhanced temporal resolution of (f*T) frames. The course high resolution video is then smoothed, when found required, to generate a smoothed high resolution video. 1. A method for increasing a resolution of a video , the method comprising:receiving a plurality of image frames of video data for processing, said video data having been captured using a video camera having a resolution of (M×N×T), where (M×N) is a spatial resolution of said camera in (x, y), respectively, and T is a temporal resolution of said camera in frames per unit of time;{'sub': 1', '2', '1', '2, 'selecting a first and second magnification factor f, f, where (f, f)≧1, for a desired spatial enhancement in (x, y), respectively;'}{'sub': 3', '3, 'selecting a third magnification factor f, where f≧2, for a desired temporal enhancement in T; and'}{'sub': h', 'l', '0', '1', '2', '3, 'processing said image frames of video data using a dictionary of high and low resolution patch cubes Dand D, respectively, to induce spatial and temporal components in said video data where no data exists, said processing generating a high resolution course video Xwith a spatial resolution of (f*M)×(f*N) and a temporal resolution of (f*T).'}2. The method of claim 1 , wherein said ...

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12-06-2014 дата публикации

DATA PROCESSING DEVICE AND METHOD

Номер: US20140160356A1
Принадлежит: Samsung Display Co., Ltd.

A data processing device includes a clock converter, a data converter, ad an error detector. The clock converter is configured to receive a first clock signal, convert the first clock signal into a second clock signal, and output the second clock signal. The data converter is configured to receive first data, convert the first data into second data using the second clock signal, and output the second data. The error detector is configured to check whether the first clock signal is in a first clock state or a second clock state upon the first data transitioning to a first data state, and output an enable signal to the clock converter upon determining that the first clock signal has transitioned to the first clock state from the second clock state. 1. A data processing device , comprising:a clock converter configured to receive a first clock signal, convert the first clock signal into a second clock signal, and output the second clock signal;a data converter configured to receive first data, convert the first data into second data using the second clock signal, and output the second data; andan error detector configured to check whether the first clock signal is in a first clock state or a second clock state upon the first data transitioning to a first data state, and output an enable signal to the clock converter upon determining that the first clock signal has transitioned to the first clock state from the second clock state.2. The data processing device of claim 1 , wherein the second clock state corresponds to an occurrence of an electrostatic discharge (ESD).3. The data processing device of claim 1 , wherein the clock converter is configured to receive the first clock signal in a third clock state claim 1 , convert the first clock signal into the second clock signal claim 1 , and output the second clock signal.4. The data processing device of claim 1 , wherein the error detector is configured to generate a flag signal and hold the flag signal while the first ...

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31-03-2016 дата публикации

Method and System for Motion Vector-Based Video Monitoring and Event Categorization

Номер: US20160092738A1
Принадлежит:

A computer system processes a video stream to detect a start of a first motion event candidate in the video stream, and in response to detecting the start of the first motion event candidate in the video stream, initiates event recognition processing on a first video segment associated with the start of the first motion event candidate. Initiating the event recognition processing further includes: determining a motion track of a first object identified in the first video segment; generating a representative motion vector for the first motion event candidate based on the motion track of the first object; and sending the representative motion vector for the first motion event candidate to an event categorizer, where the event categorizer assigns a respective motion event category to the first motion event candidate based on the representative motion vector of the first motion event candidate. 1. A method of processing a video stream , comprising: obtaining a profile of a motion pixel count for a current frame sequence in the video stream;', 'in response to determining that the obtained profile meets a predetermined trigger criterion, determining that the current frame sequence includes a motion event candidate;', 'identifying a beginning time for a portion of the profile meeting the predetermined trigger criterion; and', 'designating the identified beginning time to be the start of the first motion event candidate; and, 'processing the video stream to detect a start of a first motion event candidate in the video stream, wherein processing comprisesin response to detecting the start of the first motion event candidate in the video stream, initiating event recognition processing on a first video segment associated with the start of the first motion event candidate.2. The method of claim 1 , wherein determining that the obtained profile meets the predetermined trigger criterion includes determining that the motion pixel count satisfies a threshold motion pixel count.3. ...

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