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    • 4. 发明授权
    • System and method for motion-compensated compressed sensing for dynamic imaging
    • 用于动态成像的运动补偿压缩感测的系统和方法
    • US08520928B2
    • 2013-08-27
    • US13104255
    • 2011-05-10
    • Ali BilginYookyung KimMariappan S. NadarRajagopalan Sundaresan
    • Ali BilginYookyung KimMariappan S. NadarRajagopalan Sundaresan
    • G06K9/00
    • H04N19/577H04N19/61
    • A method for reconstructing a digital image from a set of measurements includes providing a previous image frame in a time series of measurements of an image signal and a current image frame in the time series, calculating an estimated motion vector for a spatial point and current time point between the previous and current image frames, calculating a motion compensated current image frame from the previous image frame, estimating a known support set of a sparse signal estimate of the motion compensated current image frame where the support set comprises indices of non-zero elements of the sparse signal estimate, calculating a sparse signal corresponding to the current image frame whose support contains a smallest number of new additions to the known support set while satisfying a data consistency constraint, and correcting the motion compensated current image frame image frame from the sparse signal.
    • 一种用于从一组测量重建数字图像的方法包括在时间序列中以图像信号和当前图像帧的时间序列测量的时间序列提供先前的图像帧,计算空间点和当前时间的估计的运动矢量 在先前图像帧和当前图像帧之间,从前一图像帧计算运动补偿当前图像帧,估计运动补偿当前图像帧的稀疏信号估计的已知支持集合,其中支持集合包括非零元素的索引 的稀疏信号估计,计算对应于当前图像帧的稀疏信号,其支持在满足数据一致性约束的同时包含对已知支持集合的最小数量的新加法,并且从稀疏信息校正运动补偿的当前图像帧图像帧 信号。
    • 5. 发明申请
    • SYSTEM AND METHOD FOR MOTION-COMPENSATED COMPRESSED SENSING FOR DYNAMIC IMAGING
    • 用于动态成像的运动补偿压缩感测的系统和方法
    • US20120008844A1
    • 2012-01-12
    • US13104255
    • 2011-05-10
    • Ali BilginYookyung KimMariappan S. NadarRajagopalan Sundaresan
    • Ali BilginYookyung KimMariappan S. NadarRajagopalan Sundaresan
    • G06K9/00
    • H04N19/577H04N19/61
    • A method for reconstructing a digital image from a set of measurements includes providing a previous image frame in a time series of measurements of an image signal and a current image frame in the time series, calculating an estimated motion vector for a spatial point and current time point between the previous and current image frames, calculating a motion compensated current image frame from the previous image frame, estimating a known support set of a sparse signal estimate of the motion compensated current image frame where the support set comprises indices of non-zero elements of the sparse signal estimate, calculating a sparse signal corresponding to the current image frame whose support contains a smallest number of new additions to the known support set while satisfying a data consistency constraint, and correcting the motion compensated current image frame image frame from the sparse signal.
    • 一种用于从一组测量重建数字图像的方法包括在时间序列中以图像信号和当前图像帧的时间序列测量的时间序列提供先前的图像帧,计算空间点和当前时间的估计的运动矢量 在先前图像帧和当前图像帧之间,从前一图像帧计算运动补偿当前图像帧,估计运动补偿当前图像帧的稀疏信号估计的已知支持集合,其中支持集合包括非零元素的索引 的稀疏信号估计,计算对应于当前图像帧的稀疏信号,其支持在满足数据一致性约束的同时包含对已知支持集合的最小数量的新加法,并且从稀疏信息校正运动补偿的当前图像帧图像帧 信号。
    • 10. 发明申请
    • Methods for decoding corrupt jpe2000 codestreams
    • 解码损坏jpe2000码流的方法
    • US20060056706A1
    • 2006-03-16
    • US10534620
    • 2003-11-15
    • Michael MarcellinAli Bilgin
    • Michael MarcellinAli Bilgin
    • G06K9/36
    • H04N19/66H04N19/63H04N19/645H04N19/65H04N19/89
    • The present invention provides a method for decoding corrupt codestreams for encoded digital imagery and video and, in particular, JPEG2000 codestreams with improved error resilience properties. The decoding techniques apply to a class of coding algorithms in which the data from underlying images are partitioned, typically to allow decoding of different spatial sections of the image, and the rules governing the dependencies within and perhaps between partitioned sets are known. Corrupt codestreams are decoded with improved image quality by observing the partitions imposed by the underlying algorithm (200), detecting an error in a partition set (202), analyzing the dependencies within and perhaps between the partitions (204), determining what sections of encoded data that follow the error in the partition set can be salvaged (206), and decoding those sections (208). Even though there might be errors in a particular partition, portions of that partition might still be completely or partially decodable, depending on certain modes or “switches” used during the creation of the codestream.
    • 本发明提供一种用于解码用于编码数字图像和视频的损坏码流的方法,特别是具有改进的误差弹性属性的JPEG2000码流。 解码技术适用于一类编码算法,其中来自底层图像的数据被分割,通常允许对图像的不同空间部分进行解码,并且在已分配的集合之内以及也可能在分区集之间的依赖性的规则是已知的。 通过观察底层算法(200)施加的分区,检测分区集(202)中的错误,分析分区(204)内部的可能性,并且可能在分区(204)之间确定哪些部分被编码 跟踪分区集中的错误的数据可以被消除(206),并对这些部分进行解码(208)。 即使特定分区中可能存在错误,根据在创建码流期间使用的某些模式或“开关”,该分区的部分仍然可能是完全或部分可解码的。