Patents by Inventor Chengbo Li

Chengbo Li 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).

  • Publication number: 20190293813
    Abstract: Method for acquiring seismic data is described. The method includes obtaining undersampled seismic data acquired from a non-uniform sampling grid. Attenuating multiples from the undersampled seismic data.
    Type: Application
    Filed: November 20, 2018
    Publication date: September 26, 2019
    Inventors: Zhengxue LI, Yunqing SHEN, Jianxing HU, Yong MA, Feng CHEN, Yu ZHANG, Chengbo LI, Charles C. MOSHER, Frank D. JANISZEWSKI, Laurence S. WILLIAMS, Jeffrey MALLOY, Bradley BANKHEAD, Jon ANDERSON
  • Publication number: 20190129050
    Abstract: A method for 2D seismic data acquisition includes determining source-point seismic survey positions for a combined deep profile seismic data acquisition with a shallow profile seismic data acquisition wherein the source-point positions are based on non-uniform optimal sampling. A seismic data set is acquired with a first set of air-guns optimized for a deep-data seismic profile and the data set is acquired with a second set of air-guns optimized for a shallow-data seismic profile. The data are de-blended to obtain a deep 2D seismic dataset and a shallow 2D seismic dataset.
    Type: Application
    Filed: November 2, 2017
    Publication date: May 2, 2019
    Inventors: Chengbo LI, Charles C. MOSHER, Robert G. KEYS, Peter M. EICK, Sam T. KAPLAN, Joel D. BREWER
  • Publication number: 20180335536
    Abstract: Method for acquiring seismic data is described. The method includes determining a non-uniform optimal sampling design that includes a compressive sensing sampling grid. Placing a plurality of source lines or receiver lines at a non-uniform optimal line interval. Placing a plurality of receivers or nodes at a non-uniform optimal receiver interval. Towing a plurality of streamers attached to a vessel, wherein the plurality of streamers is spaced apart at non-uniform optimal intervals based on the compressive sensing sampling grid. Firing a plurality of shots from one or more seismic sources at non-uniform optimal shot intervals. Acquiring seismic data via the plurality of receivers or nodes.
    Type: Application
    Filed: July 5, 2017
    Publication date: November 22, 2018
    Inventors: Chengbo LI, Charles C. MOSHER, Frank D. JANISZEWSKI, Laurence S. WILLIAMS
  • Patent number: 9634690
    Abstract: The present invention relates to method and apparatus for arbitrary resolution video coding using compressive measurements. The method includes receiving at least one measurement of a set of measurements that was generated at an encoder. The set of measurements represents encoded video data. The method further includes determining a display resolution, where the display resolution is the same or different than an original display resolution. The method further includes determining an expansion matrix based on at least a number of pixels for the determined display resolution, and reconstructing the video data using the determined expansion matrix such that the original display resolution is resized to the determined display resolution if the determined display resolution is different than the original display resolution. The expansion matrix includes a pattern of values.
    Type: Grant
    Filed: September 30, 2010
    Date of Patent: April 25, 2017
    Assignee: Alcatel Lucent
    Inventors: Hong Jiang, Chengbo Li, Paul Wilford
  • Patent number: 9632193
    Abstract: Computer-implemented method for determining optimal sampling grid during seismic data reconstruction includes: a) constructing an optimization model, via a computing processor, given by minu?Su?1s.t. ?Ru?b?2?? wherein S is a discrete transform matrix, b is seismic data on an observed grid, u is seismic data on a reconstruction grid, and matrix R is a sampling operator; b) defining mutual coherence as ? ? C S ? m ( log ? ? n ) 6 , wherein C is a constant, S is a cardinality of Su, m is proportional to number of seismic traces on the observed grid, and n is proportional to number of seismic traces on the reconstruction grid; c) deriving a mutual coherence proxy, wherein the mutual coherence proxy is a proxy for mutual coherence when S is over-complete and wherein the mutual coherence proxy is exactly the mutual coherence when S is a Fourier transform; and d) determining a sample grid r*=arg minr ?(r).
    Type: Grant
    Filed: October 31, 2014
    Date of Patent: April 25, 2017
    Assignee: ConocoPhillips Company
    Inventors: Chengbo Li, Sam T. Kaplan, Charles C. Mosher, Joel D. Brewer, Robert G. Keys
  • Publication number: 20170082761
    Abstract: A multi-stage inversion method for deblending seismic data includes: a) acquiring blended seismic data from a plurality of seismic sources; b) constructing an optimization model that includes the acquired blended seismic data and unblended seismic data; c) performing sparse inversion, via a computer processor, on the optimization model; d) estimating high-amplitude coherent energy from result of the performing sparse inversion in c); e) re-blending the estimated high-amplitude coherent energy; and f) computing blended data with an attenuated direct arrival energy.
    Type: Application
    Filed: December 18, 2015
    Publication date: March 23, 2017
    Inventors: Chengbo LI, Chuck MOSHER, Leo JI, Joel BREWER
  • Patent number: 9073037
    Abstract: Disclosed are a semiconductor photocatalyst for the photocatalytic reforming of biomass derivatives for hydrogen generation, and preparation and use thereof. The semiconductor photocatalyst has the atomic composition ratio of M˜N-Ax; wherein M˜N are IIB group elements to VIA group elements, or IIIA group elements to VA group elements, A being one element or more than two elements selected from the group consisting of cobalt, nickel, iron, copper, chromium, palladium, platinum, ruthenium, rhodium, iridium and silver; and 0.02%?x?1.0%. The method of in-situ preparation of the highly effective semiconductor photocatalyst and catalytically reforming biomass derivatives for hydrogen generation by driving photoreaction with visible light via quantum dots is simple, fast, highly effective, inexpensive and practical. The in situ reaction can occur in sunlight without the need of harsh conditions such as calcination.
    Type: Grant
    Filed: November 4, 2011
    Date of Patent: July 7, 2015
    Assignee: Technical Institute of Physics and Chemistry of the Chinese Academy of Sciences
    Inventors: Lizhu Wu, Zhijun Li, Chengbo Li, Xubing Li, Jiaxin Li
  • Publication number: 20150124560
    Abstract: Computer-implemented method for determining optimal sampling grid during seismic data reconstruction includes: a) constructing an optimization model, via a computing processor, given by minu?Su?1 s.t. ?Ru?b?2?? wherein S is a discrete transform matrix, b is seismic data on an observed grid, u is seismic data on a reconstruction grid, and matrix R is a sampling operator; b) defining mutual coherence as ? ? C S ? m ( log ? ? n ) 6 , wherein C is a constant, S is a cardinality of Su, m is proportional to number of seismic traces on the observed grid, and n is proportional to number of seismic traces on the reconstruction grid; c) deriving a mutual coherence proxy, wherein the mutual coherence proxy is a proxy for mutual coherence when S is over-complete and wherein the mutual coherence proxy is exactly the mutual coherence when S is a Fourier transform; and d) determining a sample grid r*=arg minr ?(r).
    Type: Application
    Filed: October 31, 2014
    Publication date: May 7, 2015
    Inventors: Chengbo LI, Sam T. KAPLAN, Charles C. MOSHER, Joel D. BREWER, Robert G. KEYS
  • Patent number: 8929456
    Abstract: The present invention relates to an apparatus and method for video coding using compressive measurements. The method includes receiving video data including frames, and determining at least one temporal structure based on a series of consecutive frames in the video data. The temporal structure includes a sub-block of video data from each frame in the series. The method further includes obtaining a measurement matrix, and generating a set of measurements by applying the measurement matrix to the at least one temporal structure. The measurement matrix includes an assigned pattern of pixel values and the set of measurements is coded data representing the at least one temporal structure.
    Type: Grant
    Filed: September 30, 2010
    Date of Patent: January 6, 2015
    Assignee: Alcatel Lucent
    Inventors: Hong Jiang, Kim Matthews, Paul Wilford, Chengbo Li
  • Publication number: 20130224105
    Abstract: Disclosed are a semiconductor photocatalyst for the photocatalytic reforming of biomass derivatives for hydrogen generation, and preparation and use thereof. The semiconductor photocatalyst has the atomic composition ratio of M˜N-Ax; wherein M˜N are IIB group elements to VIA group elements, or IIIA group elements to VA group elements, A being one element or more than two elements selected from the group consisting of cobalt, nickel, iron, copper, chromium, palladium, platinum, ruthenium, rhodium, iridium and silver; and 0.02%?x?1.0%. The method of in-situ preparation of the highly effective semiconductor photocatalyst and catalytically reforming biomass derivatives for hydrogen generation by driving photoreaction with visible light via quantum dots is simple, fast, highly effective, inexpensive and practical. The in situ reaction can occur in sunlight without the need of harsh conditions such as calcination.
    Type: Application
    Filed: November 4, 2011
    Publication date: August 29, 2013
    Applicant: Technical Institute of Physics and Chemistry of the Chinese Academy of Sciences
    Inventors: Lizhu Wu, Zhijun Li, Chengbo Li, Xubing Li, Jiaxin Li
  • Publication number: 20120082208
    Abstract: The present invention relates to method and apparatus for arbitrary resolution video coding using compressive measurements. The method includes receiving at least one measurement of a set of measurements that was generated at an encoder. The set of measurements represents encoded video data. The method further includes determining a display resolution, where the display resolution is the same or different than an original display resolution. The method further includes determining an expansion matrix based on at least a number of pixels for the determined display resolution, and reconstructing the video data using the determined expansion matrix such that the original display resolution is resized to the determined display resolution if the determined display resolution is different than the original display resolution. The expansion matrix includes a pattern of values.
    Type: Application
    Filed: September 30, 2010
    Publication date: April 5, 2012
    Applicant: ALCATEL-LUCENT USA INC.
    Inventors: Hong Jiang, Chengbo Li, Paul Wilford
  • Publication number: 20120082207
    Abstract: The present invention relates to an apparatus and method for video coding using compressive measurements. The method includes receiving video data including frames, and determining at least one temporal structure based on a series of consecutive frames in the video data. The temporal structure includes a sub-block of video data from each frame in the series. The method further includes obtaining a measurement matrix, and generating a set of measurements by applying the measurement matrix to the at least one temporal structure. The measurement matrix includes an assigned pattern of pixel values and the set of measurements is coded data representing the at least one temporal structure.
    Type: Application
    Filed: September 30, 2010
    Publication date: April 5, 2012
    Applicant: ALCATEL-LUCENT USA INC.
    Inventors: Hong Jiang, Kim Matthews, Paul Wilford, Chengbo Li