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公开(公告)号:US10349065B2
公开(公告)日:2019-07-09
申请号:US14995260
申请日:2016-01-14
Applicant: GE Video Compression, LLC
Inventor: Karsten Suehring , Thomas Schierl , Detlev Marpe , Robert Skupin , Yago Sanchez De La Fuente , Gerhard Tech
IPC: H04N19/66 , H04N19/30 , H04N19/70 , H04N19/65 , H04L29/08 , H04N19/187 , H04N19/423 , H04N19/44 , H04N19/50 , H04N19/85 , H04N19/119 , H04N19/166 , H04N19/174 , H04N19/593 , H04N19/89 , H04N19/91 , H04N19/33
Abstract: A number of negatively affected (correctly received) packets due to packet loss is reduced by providing, and analyzing, error resilience in the packets of the sequence of packets and identifying, for each of runs of one or more lost packets of the sequence of packets, a first packet in the sequence of packets after the respective run of one or more lost packets, which carries a beginning of any of the tiles of the video data stream, and concurrently carries a slice, the slice header of which is contained in any of the packets of the sequence of packets not being lost. In particular, the side information overhead for transmitting the error resilience data is comparatively low compared to the reduction in negatively affected packets due to packet loss.
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公开(公告)号:US10341667B2
公开(公告)日:2019-07-02
申请号:US15663212
申请日:2017-07-28
Applicant: GE VIDEO COMPRESSION, LLC
Inventor: Philipp Merkle , Christian Bartnik , Haricharan Lakshman , Detlev Marpe , Karsten Mueller , Thomas Wiegand , Gerhard Tech
IPC: H04N19/14 , H04N19/23 , H04N19/44 , H04N19/46 , H04N19/70 , H04N19/82 , H04N19/96 , H04N19/103 , H04N19/105 , H04N19/119 , H04N19/157 , H04N19/176 , H04N19/196 , H04N19/593 , H04N19/597
Abstract: Although wedgelet-based partitioning seems to represent a better tradeoff between side information rate on the one hand and achievable variety in partitioning possibilities on the other hand, compared to contour partitioning, the ability to alleviate the constraints of the partitioning to the extent that the partitions have to be wedgelet partitions, enables applying relatively uncomplex statistical analysis onto overlaid spatially sampled texture information in order to derive a good predictor for the bi-segmentation in a depth/disparity map. Thus, in accordance with a first aspect it is exactly the increase of the freedom which alleviates the signaling overhead provided that co-located texture information in form of a picture is present. Another aspect pertains the possibility to save side information rate involved with signaling a respective coding mode supporting irregular partitioning.
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公开(公告)号:US10321148B2
公开(公告)日:2019-06-11
申请号:US15657813
申请日:2017-07-24
Applicant: GE VIDEO COMPRESSION, LLC
Inventor: Philipp Merkle , Christian Bartnik , Haricharan Lakshman , Detlev Marpe , Karsten Mueller , Thomas Wiegand , Gerhard Tech
IPC: H04N19/14 , H04N19/46 , H04N19/51 , H04N19/52 , H04N19/70 , H04N19/82 , H04N19/96 , H04N19/105 , H04N19/119 , H04N19/157 , H04N19/176 , H04N19/196 , H04N19/593 , H04N19/597
Abstract: In accordance with a first aspect, the intra prediction direction of a neighboring, intra-predicted block is used in order to predict the extension direction of the wedgelet separation line of a current block, thereby reducing the side information rate necessitated in order to convey the partitioning information. In accordance with a second aspect, the idea is that previously reconstructed samples, i.e. reconstructed values of blocks preceding the current block in accordance with the coding/decoding order allow for at least a prediction of a correct placement of a starting point of the wedgelet separation line, namely by placing the starting point of the wedgelet separation line at a position of a maximum change between consecutive ones of a sequence of reconstructed values of samples of a line of samples extending adjacent to the current block along a circumference thereof. Both aspects may be used individually or in combination.
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公开(公告)号:US10321139B2
公开(公告)日:2019-06-11
申请号:US15655445
申请日:2017-07-20
Applicant: GE VIDEO COMPRESSION, LLC
Inventor: Philipp Merkle , Christian Bartnik , Haricharan Lakshman , Detlev Marpe , Karsten Mueller , Thomas Wiegand , Gerhard Tech
IPC: H04N19/14 , H04N19/46 , H04N19/61 , H04N19/70 , H04N19/82 , H04N19/96 , H04N19/105 , H04N19/119 , H04N19/126 , H04N19/157 , H04N19/176 , H04N19/196 , H04N19/593 , H04N19/597
Abstract: The way of predicting a current block by assigning constant partition values to the partitions of a bi-partitioning of a block is quite effective, especially in case of coding sample arrays such as depth/disparity maps where the content of these sample arrays is mostly composed of plateaus or simple connected regions of similar value separated from each other by steep edges. The transmission of such constant partition values would, however, still need a considerable amount of side information which should be avoided. This side information rate may be further reduced if mean values of values of neighboring samples associated or adjoining the respective partitions are used as predictors for the constant partition values.
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175.
公开(公告)号:US10257544B2
公开(公告)日:2019-04-09
申请号:US15413852
申请日:2017-01-24
Applicant: GE VIDEO COMPRESSION, LLC
Inventor: Heiner Kirchhoffer , Martin Winken , Philipp Helle , Detlev Marpe , Heiko Schwarz , Thomas Wiegand
IPC: H04N19/96 , H04N19/17 , H04N19/52 , H04N19/169 , H04N19/46 , H04N19/53 , H04N19/59 , H04N19/593 , H04N19/61 , H04N19/176
Abstract: Coding schemes for coding a spatially sampled information signal using sub-division and coding schemes for coding a sub-division or a multitree structure are described, wherein representative embodiments relate to picture and/or video coding applications.
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公开(公告)号:US10230954B2
公开(公告)日:2019-03-12
申请号:US16040764
申请日:2018-07-20
Applicant: GE Video Compression, LLC
Inventor: Valeri George , Benjamin Bross , Heiner Kirchhoffer , Detlev Marpe , Tung Nguyen , Matthias Preiss , Mischa Siekmann , Jan Stegemann , Thomas Wiegand
IPC: H04N19/13 , H03M7/42 , H04N19/124 , H04N19/61 , H04N19/70 , H04N19/50 , H04N19/184 , H04N19/174 , H04N19/91 , H04N19/513 , H04N19/132 , H04N19/52
Abstract: An entropy decoder is configured to, for horizontal and vertical components of motion vector differences, derive a truncated unary code from the data stream using context-adaptive binary entropy decoding with exactly one context per bin position of the truncated unary code, which is common for horizontal and vertical components of the motion vector differences, and an Exp-Golomb code using a constant equi-probability bypass mode to obtain the binarizations of the motion vector differences. A desymbolizer is configured to debinarize the binarizations of the motion vector difference syntax elements to obtain integer values of the horizontal and vertical components of the motion vector differences. A reconstructor is configured to reconstruct a video based on the integer values of the horizontal and vertical components of the motion vector differences.
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177.
公开(公告)号:US10212419B2
公开(公告)日:2019-02-19
申请号:US14666634
申请日:2015-03-24
Applicant: GE Video Compression, LLC
Inventor: Tobias Hinz , Haricharan Lakshman , Jan Stegemann , Philipp Helle , Mischa Siekmann , Karsten Suehring , Detlev Marpe , Heiko Schwarz , Christian Bartnik , Ali Atef Ibrahim Khairat Abdelhamid , Heiner Kirchhoffer , Thomas Wiegand
IPC: H04N19/103 , H04N19/46 , H04N19/119 , H04N19/105 , H04N19/117 , H04N19/157 , H04N19/187 , H04N19/82 , H04N19/33 , H04N19/587 , H04N19/59 , H04N19/18 , H04N19/48 , H04N19/61 , H04N19/70 , H04N19/86 , H04N19/107 , H04N19/137 , H04N19/176 , H04N19/196 , H04N19/503 , H04N19/593 , H04N19/615 , H04N19/11 , H04N19/463
Abstract: Scalable video coding is rendered more efficient by deriving/selecting a subblock subdivision to be used for enhancement layer prediction, among a set of possible subblock subdivisions of an enhancement layer block by evaluating the spatial variation of the base layer coding parameters over the base layer signal. By this measure, less of the signalization overhead has to be spent on signaling this subblock subdivision within the enhancement layer data stream, if any. The subblock subdivision thus selected may be used in predictively coding/decoding the enhancement layer signal.
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公开(公告)号:US10142639B2
公开(公告)日:2018-11-27
申请号:US14995222
申请日:2016-01-14
Applicant: GE Video Compression, LLC
Inventor: Karsten Suehring , Thomas Schierl , Detlev Marpe , Robert Skupin , Yago Sanchez De La Fuente , Gerhard Tech
IPC: H04N19/30 , H04N19/70 , H04N19/65 , H04L29/08 , H04N19/187 , H04N19/423 , H04N19/44 , H04N19/50 , H04N19/85 , H04N19/119 , H04N19/166 , H04N19/174 , H04N19/593 , H04N19/66 , H04N19/89 , H04N19/91 , H04N19/33
Abstract: The signalization of the inter-layer dependencies between layers of a multi-layered data stream is described. A good compromise between a too intensive restriction of the potential diversity of inter-layer dependencies on the one hand and a too complex signaling of the inter-layer dependencies on the other hand has been found by describing the inter-layer dependencies by way of a first inter-dependency syntax structure indicating inter-dependencies between pairs of different values representable by a base layer-ID and a second inter-dependency syntax structure indicating inter-dependencies between pairs of different values representable by an extension layer-ID, the base layer ID and extension layer ID indexing the layers the portions of the multi-layer data stream are associated with. In accordance with this concept, emphasis may be shifted between increased diversity of the signalizable inter-layer dependencies on the one hand and reduced side-information overhead for signaling the inter-layer dependencies on the other hand.
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公开(公告)号:US10057603B2
公开(公告)日:2018-08-21
申请号:US15843679
申请日:2017-12-15
Applicant: GE Video Compression, LLC
Inventor: Valeri George , Benjamin Bross , Heiner Kirchhoffer , Detlev Marpe , Tung Nguyen , Matthias Preiss , Mischa Siekmann , Jan Stegemann , Thomas Wiegand , Christian Bartnik
IPC: H04B1/66 , H04N7/12 , H04N11/02 , H04N11/04 , H04N19/91 , H04N19/184 , H04N19/174 , H04N19/513 , H04N19/132 , H03M7/42 , H04N19/124 , H04N19/61 , H04N19/13 , H04N19/70 , H04N19/50 , H04N19/52
Abstract: A decoder for decoding a data stream into which media data is coded has a mode switch configured to activate a low-complexity mode or a high-efficiency mode depending on the data stream, an entropy decoding engine configured to retrieve each symbol of a sequence of symbols by entropy decoding using a selected one of a plurality of entropy decoding schemes, a desymbolizer configured to desymbolize the sequence of symbols to obtain a sequence of syntax elements, a reconstructor configured to reconstruct the media data based on the sequence of syntax elements, selection depending on the activated low-complexity mode or the high-efficiency mode. In another aspect, a desymbolizer is configured to perform desymbolization such that the control parameter varies in accordance with the data stream at a first rate in case of the high-efficiency mode being activated and the control parameter is constant irrespective of the data stream or changes depending on the data stream, but at a second lower rate in case of the low-complexity mode being activated.
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公开(公告)号:US10045049B2
公开(公告)日:2018-08-07
申请号:US15621702
申请日:2017-06-13
Applicant: GE Video Compression, LLC
Inventor: Tung Nguyen , Heiner Kirchhoffer , Detlev Marpe
Abstract: An idea used herein is to use the same function for the dependency of the context and the dependency of the symbolization parameter on previously coded/decoded transform coefficients. Using the same function—with varying function parameter—may even be used with respect to different transform block sizes and/or frequency portions of the transform blocks in case of the transform coefficients being spatially arranged in transform blocks. A further variant of this idea is to use the same function for the dependency of a symbolization parameter on previously coded/decoded transform coefficients for different sizes of the current transform coefficient's transform block, different information component types of the current transform coefficient's transform block and/or different frequency portions the current transform coefficient is located within the transform block.
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