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    • 64. 发明授权
    • Complex-transform channel coding with extended-band frequency coding
    • 具有扩展频带编码的复变换信道编码
    • US07831434B2
    • 2010-11-09
    • US11336606
    • 2006-01-20
    • Sanjeev MehrotraWei-Ge Chen
    • Sanjeev MehrotraWei-Ge Chen
    • G10L19/00H04R5/00
    • G10L21/038G10L19/008
    • An audio encoder receives multi-channel audio data comprising a group of plural source channels and performs channel extension coding, which comprises encoding a combined channel for the group and determining plural parameters for representing individual source channels of the group as modified versions of the encoded combined channel. The encoder also performs frequency extension coding. The frequency extension coding can comprise, for example, partitioning frequency bands in the multi-channel audio data into a baseband group and an extended band group, and coding audio coefficients in the extended band group based on audio coefficients in the baseband group. The encoder also can perform other kinds of transforms. An audio decoder performs corresponding decoding and/or additional processing tasks, such as a forward complex transform.
    • 音频编码器接收包括一组多个源信道的多声道音频数据,并执行信道扩展编码,其包括对该组的组合信道进行编码,并确定用于表示该组的各个源信道的多个参数,作为编码组合的修改版本 渠道。 编码器还执行频率扩展编码。 频率扩展编码可以包括例如将多声道音频数据中的频带划分为基带组和扩展频带组,并且基于基带组中的音频系数对扩展频带组中的音频系数进行编码。 编码器还可以执行其他类型的转换。 音频解码器执行相应的解码和/或附加处理任务,例如前向复合变换。
    • 68. 发明申请
    • EFFICIENT CODING OF DIGITAL MEDIA SPECTRAL DATA USING WIDE-SENSE PERCEPTUAL SIMILARITY
    • 数字媒体光谱数据的高效编码使用宽视觉相似度
    • US20090083046A1
    • 2009-03-26
    • US12324689
    • 2008-11-26
    • Sanjeev MehrotraWei-Ge Chen
    • Sanjeev MehrotraWei-Ge Chen
    • G10L19/00
    • G10L19/0208G10L19/0204G10L19/035
    • Traditional audio encoders may conserve coding bit-rate by encoding fewer than all spectral coefficients, which can produce a blurry low-pass sound in the reconstruction. An audio encoder using wide-sense perceptual similarity improves the quality by encoding a perceptually similar version of the omitted spectral coefficients, represented as a scaled version of already coded spectrum. The omitted spectral coefficients are divided into a number of sub-bands. The sub-bands are encoded as two parameters: a scale factor, which may represent the energy in the band; and a shape parameter, which may represent a shape of the band. The shape parameter may be in the form of a motion vector pointing to a portion of the already coded spectrum, an index to a spectral shape in a fixed code-book, or a random noise vector. The encoding thus efficiently represents a scaled version of a similarly shaped portion of spectrum to be copied at decoding.
    • 传统的音频编码器可以通过编码少于所有频谱系数来节省编码比特率,这可以在重建中产生模糊的低通声音。 使用广义感知相似性的音频编码器通过编码被忽略的频谱系数的感知相似版本来提高质量,表示为已编码频谱的缩放版本。 省略的频谱系数被划分为多个子带。 子带被编码为两个参数:比例因子,其可以表示频带中的能量; 以及形状参数,其可以表示带的形状。 形状参数可以是指向已编码频谱的一部分的运动矢量的形式,固定码本中的频谱形状的索引或随机噪声向量。 因此,编码有效地表示在解码时要复制的类似形状的频谱部分的缩放版本。
    • 69. 发明授权
    • Efficient coding of digital media spectral data using wide-sense perceptual similarity
    • 使用广义感知相似性对数字媒体光谱数据进行高效编码
    • US07460990B2
    • 2008-12-02
    • US10882801
    • 2004-06-29
    • Sanjeev MehrotraWei-Ge Chen
    • Sanjeev MehrotraWei-Ge Chen
    • G10L11/04
    • G10L19/0208G10L19/0204G10L19/035
    • Traditional audio encoders may conserve coding bit-rate by encoding fewer than all spectral coefficients, which can produce a blurry low-pass sound in the reconstruction. An audio encoder using wide-sense perceptual similarity improves the quality by encoding a perceptually similar version of the omitted spectral coefficients, represented as a scaled version of already coded spectrum. The omitted spectral coefficients are divided into a number of sub-bands. The sub-bands are encoded as two parameters: a scale factor, which may represent the energy in the band; and a shape parameter, which may represent a shape of the band. The shape parameter may be in the form of a motion vector pointing to a portion of the already coded spectrum, an index to a spectral shape in a fixed code-book, or a random noise vector. The encoding thus efficiently represents a scaled version of a similarly shaped portion of spectrum to be copied at decoding.
    • 传统的音频编码器可以通过编码少于所有频谱系数来节省编码比特率,这可以在重建中产生模糊的低通声音。 使用广义感知相似性的音频编码器通过编码被忽略的频谱系数的感知相似版本来提高质量,表示为已编码频谱的缩放版本。 省略的频谱系数被划分为多个子带。 子带被编码为两个参数:比例因子,其可以表示频带中的能量; 以及形状参数,其可以表示带的形状。 形状参数可以是指向已编码频谱的一部分的运动矢量的形式,固定码本中的频谱形状的索引或随机噪声向量。 因此,编码有效地表示在解码时要复制的类似形状的频谱部分的缩放版本。
    • 70. 发明授权
    • Motion estimation/compensation for screen capture video
    • 屏幕捕捉视频的运动估计/补偿
    • US07224731B2
    • 2007-05-29
    • US10186473
    • 2002-06-28
    • Sanjeev Mehrotra
    • Sanjeev Mehrotra
    • H04N7/12G06K9/36
    • H04N5/145H04N19/105H04N19/132H04N19/139H04N19/147H04N19/152H04N19/17H04N19/172H04N19/176H04N19/18H04N19/51H04N19/53H04N19/557H04N19/56H04N19/59H04N19/60H04N19/61H04N19/91
    • The present invention relates to motion estimation and compensation. For example, a screen capture encoder performs motion estimation that is adapted to screen capture video in various respects. For example, the motion estimation uses a distortion measure based upon the count of equal/unequal pixels in two regions, sub-samples the distortion measure to speed up motion estimation, and/or uses a search pattern that prioritizes types of motion common in screen capture video. Or, a screen capture decoder performs motion compensation that is adapted to screen capture video in various respects. For example, the decoder performs the motion compensation for pixels with different values at corresponding locations in a current frame and a reference frame, but not for all pixels of the current frame. Alternatively, an encoder/decoder performs the motion estimation/compensation to compress/decompress other kinds of content.
    • 本发明涉及运动估计和补偿。 例如,屏幕捕获编码器执行适于在各个方面屏幕捕获视频的运动估计。 例如,运动估计使用基于两个区域中的相等/不等像素的计数的失真度量,对失真测量进行子采样以加速运动估计,和/或使用对屏幕中共同的运动类型进行优先排序的搜索模式 捕获视频 或者,屏幕捕获解码器执行适于在各个方面屏幕捕获视频的运动补偿。 例如,解码器对当前帧和参考帧中的相应位置处的具有不同值的像素执行运动补偿,但不对当前帧的所有像素执行运动补偿。 或者,编码器/解码器执行运动估计/补偿来压缩/解压缩其他种类的内容。