Patents by Inventor Zixiang Xiong

Zixiang Xiong has filed for patents to protect the following inventions. This listing includes patent applications that are pending as well as patents that have already been granted by the United States Patent and Trademark Office (USPTO).

  • Patent number: 9275438
    Abstract: An apparatus comprising one or more processors configured to receive a digital image comprising a current pixel and a plurality of nearby pixels, determine a pixel intensity of the current pixel, wherein the pixel intensity comprises a noise component, and reduce the noise component by applying a bilateral filter as a combination of a domain filter and a range filter on the current pixel, wherein the domain filter is dependent on the pixel intensity and geometric closeness between the current pixel and the nearby pixels, and wherein the range filter is dependent on the pixel intensity and photometric similarity between the current pixel and the nearby pixels.
    Type: Grant
    Filed: March 26, 2014
    Date of Patent: March 1, 2016
    Assignee: Futurewei Technologies, Inc.
    Inventors: Bo Wang, Zixiang Xiong, Dongqing Zhang, Hong Heather Yu
  • Publication number: 20140293096
    Abstract: An apparatus comprising one or more processors configured to receive a digital image comprising a current pixel and a plurality of nearby pixels, determine a pixel intensity of the current pixel, wherein the pixel intensity comprises a noise component, and reduce the noise component by applying a bilateral filter as a combination of a domain filter and a range filter on the current pixel, wherein the domain filter is dependent on the pixel intensity and geometric closeness between the current pixel and the nearby pixels, and wherein the range filter is dependent on the pixel intensity and photometric similarity between the current pixel and the nearby pixels.
    Type: Application
    Filed: March 26, 2014
    Publication date: October 2, 2014
    Applicant: Futurewei Technologies, Inc.
    Inventors: Bo Wang, Zixiang Xiong, Dongqing Zhang, Hong Heather Yu
  • Patent number: 8363747
    Abstract: Systems and methods that implement compress-forward (CF) coding with N-PSK modulation for the relay channel are disclosed, where N is greater than or equal to two. In the CF scheme, Wyner-Ziv coding is applied at the relay to exploit the joint statistics between signals at the relay and the destination. Quantizer design and selection of channel code parameters are discussed. Low-density parity check (LDPC) codes are used for error protection at the source, and nested scalar quantization (NSQ) and irregular repeat accumulate (IRA) codes for Wyner Ziv coding (or more precisely, distributed joint source-channel coding) at the relay. The destination system decodes original message information using (a) a first signal received from the source in a first interval and (b) a second signal that represents a mixture of transmissions from the source and relay in the second interval.
    Type: Grant
    Filed: March 8, 2011
    Date of Patent: January 29, 2013
    Assignee: The Texas A&M University System
    Inventors: Zhixin Liu, Vladimir M. Stankovic, Zixiang Xiong
  • Patent number: 8315306
    Abstract: A video encoder system includes a base layer and an enhancement layer for encoding video data. The base layer encodes a reduced quality version of the video data to obtain base layer data. The enhancement layer encodes the video data using energy-concentrating transform operations, nested scalar quantization, and Raptor encoders. The base layer data and enhancement layer data are transmitted through a channel to a video decoder system. The decoder system decodes the base layer data to recover an estimate of the reduced quality video and decodes the enhancement layer data (using the reduced quality video as side information) to obtain blocks of coset indices. The decoder system then operates on the blocks of coset indices to generate estimates of the original video data.
    Type: Grant
    Filed: September 8, 2006
    Date of Patent: November 20, 2012
    Assignee: The Texas A&M University System
    Inventors: Qian Xu, Vladimir M. Stanković, Zixiang Xiong
  • Patent number: 8245119
    Abstract: Code designs for channel coding with side information (CCSI) based on combined source-channel coding are disclosed. These code designs combine trellis-coded quantization (TCQ) with irregular repeat accumulate (IRA) codes. The EXIT chart technique is used for IRA channel code design (and especially for capacity-approaching IRA channel code design). We emphasize the role of strong source coding and endeavor to achieve as much granular gain as possible by using TCQ. These code designs synergistically combine TCQ with IRA codes. By bringing together TCQ and EXIT chart-based IRA code designs, we are able to approach the theoretical limit of dirty-paper coding.
    Type: Grant
    Filed: August 29, 2011
    Date of Patent: August 14, 2012
    Assignee: The Texas A&M University System
    Inventors: Yong Sun, Angelos D. Liveris, Vladimir M. Stankovic, Zixiang Xiong
  • Patent number: 8207874
    Abstract: An encoder employs a trellis coded quantization (TCQ) unit and a compression unit. The TCQ uses a set of polynomials that have been selected to maximize granular gain. The TCQ unit operates on a block of samples from a source. The compression unit compresses bit planes of the TCQ output, using parity check matrices of corresponding LDPC codes, to obtain corresponding syndromes. The parity check matrices are selected so their compression performance approaches close to the limit for Slepian-Wolf coding. A decoder employs a decoding unit and an estimation unit. The decoding unit decodes the syndromes using side information to produce an estimate for the TCQ output. The side information is correlated with the source. The estimation unit estimates the block of source samples using the estimated TCQ output and the side information. Trellis coded vector quantization may be used as an alternative to TCQ.
    Type: Grant
    Filed: August 4, 2008
    Date of Patent: June 26, 2012
    Assignee: The Texas A&M University System
    Inventors: Yang Yang, Zixiang Xiong
  • Publication number: 20110311003
    Abstract: Code designs for channel coding with side information (CCSI) based on combined source-channel coding are disclosed. These code designs combine trellis-coded quantization (TCQ) with irregular repeat accumulate (IRA) codes. The EXIT chart technique is used for IRA channel code design (and especially for capacity-approaching IRA channel code design). We emphasize the role of strong source coding and endeavor to achieve as much granular gain as possible by using TCQ. These code designs synergistically combine TCQ with IRA codes. By bringing together TCQ and EXIT chart-based IRA code designs, we are able to approach the theoretical limit of dirty-paper coding.
    Type: Application
    Filed: August 29, 2011
    Publication date: December 22, 2011
    Applicant: THE TEXAS A&M UNIVERSITY SYSTEM
    Inventors: Yong Sun, Angelos D. Liveris, Vladimir M. Stankovic, Zixiang Xiong
  • Patent number: 8073052
    Abstract: A system and method for video coding. Energy-concentrating transform operations are performed on video data to obtain transformed data. Nested scalar quantization is performed on the transformed data to generate blocks of coset indices. Bit planes of the blocks of coset indices are encoded using irregular repeat accumulate (IRA) encoders to generate corresponding bit streams. The bit streams are transmitted to a destination device over a channel. A decoder of the destination device receives input data, corresponding to transmitted bit streams, from the channel. The input data is decoded, using side information, to obtain estimates for the blocks of coset indices. Output video data (i.e., an estimate of the original video data) is generated using the estimated blocks of coset indices and the side information.
    Type: Grant
    Filed: July 27, 2006
    Date of Patent: December 6, 2011
    Assignee: The Texas A&M University System
    Inventors: Qian Xu, Vladimir M. Stankovic, Zixiang Xiong
  • Patent number: 8065592
    Abstract: System and method for designing Slepian-Wolf codes by channel code partitioning. A generator matrix is partitioned to generate a plurality of sub-matrices corresponding respectively to a plurality of correlated data sources. The partitioning is performed in accordance with a rate allocation among the plurality of correlated data sources. A corresponding plurality of parity matrices are generated based respectively on the sub-matrices, where each parity matrix is useable to encode data from a respective one of the correlated data sources.
    Type: Grant
    Filed: July 30, 2010
    Date of Patent: November 22, 2011
    Assignee: The Texas A&M University System
    Inventors: Vladimir M. Stankovic, Angelos D. Liveris, Zixiang Xiong, Costas N. Georghiades
  • Patent number: 8020082
    Abstract: Code designs for channel coding with side information (CCSI) based on combined source-channel coding are disclosed. These code designs combine trellis-coded quantization (TCQ) with irregular repeat accumulate (IRA) codes. The EXIT chart technique is used for IRA channel code design (and especially for capacity-approaching IRA channel code design). We emphasize the role of strong source coding and endeavor to achieve as much granular gain as possible by using TCQ. These code designs synergistically combine TCQ with IRA codes. By bringing together TCQ and EXIT chart-based IRA code designs, we are able to approach the theoretical limit of dirty-paper coding.
    Type: Grant
    Filed: March 9, 2007
    Date of Patent: September 13, 2011
    Assignee: The Texas A & M University System
    Inventors: Yong Sun, Angelos D. Liveris, Vladimir M. Stanković, Zixiang Xiong
  • Publication number: 20110161776
    Abstract: Systems and methods that implement compress-forward (CF) coding with N-PSK modulation for the relay channel are disclosed, where N is greater than or equal to two. In the CF scheme, Wyner-Ziv coding is applied at the relay to exploit the joint statistics between signals at the relay and the destination. Quantizer design and selection of channel code parameters are discussed. Low-density parity check (LDPC) codes are used for error protection at the source, and nested scalar quantization (NSQ) and irregular repeat accumulate (IRA) codes for Wyner Ziv coding (or more precisely, distributed joint source-channel coding) at the relay. The destination system decodes original message information using (a) a first signal received from the source in a first interval and (b) a second signal that represents a mixture of transmissions from the source and relay in the second interval.
    Type: Application
    Filed: March 8, 2011
    Publication date: June 30, 2011
    Applicant: THE TEXAS A&M UNIVERSITY SYSTEM
    Inventors: Zhixin Liu, Vladimir M. Stankovic, Zixiang Xiong
  • Patent number: 7949049
    Abstract: A video coding system and method utilizes a 3-D wavelet transform that is memory efficient and reduces boundary effect across frame boundaries. The transform employs a lifting-based scheme and buffers wavelet coefficients at intermediate lifting steps towards the end of one GOP (group of pictures) until intermediate coefficients from the beginning of the next GOP are available. The wavelet transform scheme does not physically break the video sequence into GOPs, but processes the sequence without intermission. In this manner, the system simulates an infinite wavelet transformation across frame boundaries and the boundary effect is significantly reduced or essentially eliminated. Moreover, the buffering is very small and the scheme can be used to implement other decomposition structures. The wavelet transform scheme provides superb video playback quality with little or no boundary effects.
    Type: Grant
    Filed: August 6, 2004
    Date of Patent: May 24, 2011
    Assignee: Microsoft Corporation
    Inventors: Jizheng Xu, Shipeng Li, Ya-Qin Zhang, Zixiang Xiong
  • Patent number: 7912147
    Abstract: Systems and methods that implement compress-forward (CF) coding with N-PSK modulation for the relay channel are disclosed, where N is greater than or equal to two. In the CF scheme, Wyner-Ziv coding is applied at the relay to exploit the joint statistics between signals at the relay and the destination. Quantizer design and selection of channel code parameters are discussed. Low-density parity check (LDPC) codes are used for error protection at the source, and nested scalar quantization (NSQ) and irregular repeat accumulate (IRA) codes for Wyner Ziv coding (or more precisely, distributed joint source-channel coding) at the relay. The destination system decodes original message information using (a) a first signal received from the source in a first interval and (b) a second signal that represents a mixture of transmissions from the source and relay in the second interval.
    Type: Grant
    Filed: March 14, 2007
    Date of Patent: March 22, 2011
    Assignee: The Texas A&M University System
    Inventors: Zhixin Liu, Vladimir M. Stanković, Zixiang Xiong
  • Publication number: 20110029846
    Abstract: System and method for designing Slepian-Wolf codes by channel code partitioning. A generator matrix is partitioned to generate a plurality of sub-matrices corresponding respectively to a plurality of correlated data sources. The partitioning is performed in accordance with a rate allocation among the plurality of correlated data sources. A corresponding plurality of parity matrices are generated based respectively on the sub-matrices, where each parity matrix is useable to encode data from a respective one of the correlated data sources.
    Type: Application
    Filed: July 30, 2010
    Publication date: February 3, 2011
    Applicant: THE TEXAS A&M UNIVERSITY SYSTEM
    Inventors: Vladimir M. Stankovic, Angelos D. Liveris, Zixiang Xiong, Costas N. Georghiades
  • Patent number: 7779326
    Abstract: System and method for designing Slepian-Wolf codes by channel code partitioning. A generator matrix is partitioned to generate a plurality of sub-matrices corresponding respectively to a plurality of correlated data sources. The partitioning is performed in accordance with a rate allocation among the plurality of correlated data sources. A corresponding plurality of parity matrices are generated based respectively on the sub-matrices, where each parity matrix is useable to encode data from a respective one of the correlated data sources.
    Type: Grant
    Filed: March 1, 2005
    Date of Patent: August 17, 2010
    Assignee: The Texas A&M University System
    Inventors: Vladimir M. Stankovic, Angelos D. Liveris, Zixiang Xiong, Costas N. Georghiades
  • Patent number: 7653867
    Abstract: System and method for Slepian-Wolf coding using channel code partitioning. A generator matrix is partitioned to generate multiple sub-matrices corresponding respectively to multiple correlated data sources. The partitioning is in accordance with a rate allocation among the correlated data sources. Corresponding parity matrices may be generated respectively from the sub-matrices, where each parity matrix is useable to encode correlated data for a respective correlated data source, resulting in respective syndromes, e.g., in the form of binary vectors. A common receiver may receive the syndromes and expand them to a common length by inserting zeros appropriately. The expanded syndromes may be vector summed (e.g., modulo 2), and a single channel decoding applied to determine a closest codeword, portions of whose systematic part may be multiplied by respective submatrices of the generator matrix, which products may be added to the respective expanded syndromes to produce estimates of the source data.
    Type: Grant
    Filed: March 22, 2005
    Date of Patent: January 26, 2010
    Assignee: The Texas A&M University System
    Inventors: Vladimir M. Stankovic, Angelos D. Liveris, Zixiang Xiong, Costas N. Georghiades
  • Patent number: 7649479
    Abstract: A system and method for realizing a Wyner-Ziv encoder may involve the following steps: (a) apply nested quantization to input data from an information source in order to generate intermediate data; and (b) encode the intermediate data using an asymmetric Slepian-Wolf encoder in order to generate compressed output data representing the input data. Similarly, a Wyner-Ziv decoder may be realized by: (1) applying an asymmetric Slepian-Wolf decoder to compressed input data using side information to generate intermediate values, and (b) jointly decoding the intermediate values using the side information to generate decompressed output data.
    Type: Grant
    Filed: October 8, 2007
    Date of Patent: January 19, 2010
    Inventors: Zhixin Liu, Samuel S. Cheng, Angelos D. Liveris, Zixiang Xiong
  • Patent number: 7602317
    Abstract: A system and method for realizing a Wyner-Ziv encoder may involve the following steps: (a) apply nested quantization to input data from an information source in order to generate intermediate data; and (b) encode the intermediate data using an asymmetric Slepian-Wolf encoder in order to generate compressed output data representing the input data. Similarly, a Wyner-Ziv decoder may be realized by: (1) applying an asymmetric Slepian-Wolf decoder to compressed input data using side information to generate intermediate values, and (b) jointly decoding the intermediate values using the side information to generate decompressed output data.
    Type: Grant
    Filed: October 8, 2007
    Date of Patent: October 13, 2009
    Inventors: Zhixin Liu, Samuel S. Cheng, Angelos D. Liveris, Zixiang Xiong
  • Publication number: 20090232242
    Abstract: A method for the Costa problem includes turbo-like nested code. In one embodiment, the method includes providing a turbo-like trellis-coded quantization for source coding. The method also includes providing a turbo trellis-coded modulation for channel coding.
    Type: Application
    Filed: September 29, 2008
    Publication date: September 17, 2009
    Inventors: Zixiang Xiong, Yong Sun, Momin Uppal, Angelos Liveris, Szeming Cheng, Vladimir Stankovic
  • Publication number: 20090031191
    Abstract: An encoder employs a trellis coded quantization (TCQ) unit and a compression unit. The TCQ uses a set of polynomials that have been selected to maximize granular gain. The TCQ unit operates on a block of samples from a source. The compression unit compresses bit planes of the TCQ output, using parity check matrices of corresponding LDPC codes, to obtain corresponding syndromes. The parity check matrices are selected so their compression performance approaches close to the limit for Slepian-Wolf coding. A decoder employs a decoding unit and an estimation unit. The decoding unit decodes the syndromes using side information to produce an estimate for the TCQ output. The side information is correlated with the source. The estimation unit estimates the block of source samples using the estimated TCQ output and the side information. Trellis coded vector quantization may be used as an alternative to TCQ.
    Type: Application
    Filed: August 4, 2008
    Publication date: January 29, 2009
    Inventors: Yang Yang, Zixiang Xiong