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    • 5. 发明申请
    • Efficient video slicing
    • 高效的视频切片
    • US20060039483A1
    • 2006-02-23
    • US11018076
    • 2004-12-20
    • Yen-Chi LeeMing-Chang TsaiKhaled El-Maleh
    • Yen-Chi LeeMing-Chang TsaiKhaled El-Maleh
    • H04B1/66H04N7/12H04N11/04H04N11/02
    • H04N19/68H04N19/174H04N19/89
    • The disclosure is directed to a video slicing technique that promotes low complexity, bandwidth efficiency and error resiliency. A video encoder places an RM close to the beginning of each logical transmission unit (LTU) so that all but a very small end segment of each video slice fits substantially within an LTU. Instead of requiring placement of RMs exactly at the LTU boundaries, a video encoder applies an approximate alignment technique. Video slices are encoded so that RMs are placed close to the beginning of each LTU, e.g., at the end of the first MB falling within the LTU. A portion of the last MB from the preceding slice carries over into the next LTU. Loss of an LTU results in loss of virtually the entire current slice plus a very small portion of the previous slice.
    • 本公开涉及一种促进低复杂度,带宽效率和错误弹性的视频切片技术。 视频编码器使RM靠近每个逻辑传输单元(LTU)的开始,使得每个视频片段的除了非常小的端段之外的所有基本上都在LTU内。 视频编码器不需要将RM完全放置在LTU边界,而是应用近似对准技术。 视频片段被编码,使得RM被放置在每个LTU的开始附近,例如在第一MB的结尾落在LTU内。 来自前一个片段的最后一个MB的一部分进入下一个LTU。 LTU的丢失导致几乎整个当前切片的损失加上前一切片的非常小的部分。
    • 8. 发明授权
    • Systems, methods, and apparatus for context processing using multi resolution analysis
    • 使用多分辨率分析的上下文处理的系统,方法和装置
    • US08554550B2
    • 2013-10-08
    • US12129466
    • 2008-05-29
    • Nagendra NagarajaKhaled El-Maleh
    • Nagendra NagarajaKhaled El-Maleh
    • G10L21/02G10L19/00G10L11/00
    • G10L21/02G10L19/012G10L21/0208G10L21/0272
    • Configurations disclosed herein include systems, methods, and apparatus that may be applied in a voice communications and/or storage application to remove, enhance, and/or replace the existing context. Particularly, certain embodiments contemplate suppressing the context component from the digital audio signal to obtain a context-suppressed signal; generating an audio context signal that is based on a first filter and a first plurality of sequences, each of the first plurality of sequences having a different time resolution and mixing a first signal that is based on the generated audio context signal with a second signal that is based on the context-suppressed signal to obtain a context-enhanced signal, wherein generating an audio context signal includes applying the first filter to each of the first plurality of sequences.
    • 本文公开的配置包括可以应用于语音通信和/或存储应用中以去除,增强和/或替代现有上下文的系统,方法和装置。 具体地,某些实施例考虑从数字音频信号抑制上下文成分以获得上下文抑制信号; 生成基于第一滤波器和第一多个序列的音频上下文信号,所述第一多个序列中的每一个具有不同的时间分辨率,并且将基于所生成的音频上下文信号的第一信号与第二信号混合,所述第二信号 基于所述上下文抑制信号以获得上下文增强信号,其中生成音频上下文信号包括将所述第一滤波器应用于所述第一多个序列中的每一个。
    • 10. 发明申请
    • Video demultiplexer and decoder with efficient data recovery
    • 视频解复用器和解码器,具有高效的数据恢复功能
    • US20060062312A1
    • 2006-03-23
    • US10947981
    • 2004-09-22
    • Yen-Chi LeeMing-Chang TsaiYan YeFan LingKhaled El-Maleh
    • Yen-Chi LeeMing-Chang TsaiYan YeFan LingKhaled El-Maleh
    • H04B1/66H04N11/04H04N11/02H04N7/12
    • H04L29/06027H04L67/04H04N19/895H04N21/4382H04N21/8455
    • A video demultiplexer and video decoder include features for efficient video data recovery in the event of channel error. The demultiplexer detects a boundary between physical layer data units and adds boundary information to the bitstream produced by the demultiplexer. The demultiplexer produces adaptation layer data units, which are processed by the adaptation layer to produce an application layer bitstream. When the video decoder encounters an error in the bitstream, it uses the boundary information to limit the amount of data that must be concealed. In particular, the boundary information permits the error to be associated with a small segment of data. The video decoder conceals data from the beginning of the segment of data, rather than an entire slice or frame in which the segment resides. In this manner, the video decoder provides efficient data recovery, limiting the loss of useful data that otherwise would be purposely discarded for concealment purposes.
    • 视频解复用器和视频解码器包括在频道错误的情况下有效的视频数据恢复的特征。 解复用器检测物理层数据单元之间的边界,并将边界信息添加到由解复用器产生的位流。 解复用器产生适配层数据单元,其由适配层处理以产生应用层比特流。 当视频解码器在比特流中遇到错误时,它使用边界信息来限制必须隐藏的数据量。 特别地,边界信息允许错误与一小段数据相关联。 视频解码器从数据段的开头隐藏数据,而不是段所在的整个片或帧。 以这种方式,视频解码器提供有效的数据恢复,限制为了隐藏目的而有意丢弃的有用数据的丢失。