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    • 2. 发明申请
    • VIDEO CODING WITH ADAPTIVE FILTERING FOR MOTION COMPENSATED PREDICTION
    • 自适应滤波运动补偿预测的视频编码
    • WO2008048864A3
    • 2008-08-07
    • PCT/US2007081145
    • 2007-10-11
    • QUALCOMM INCYE YANBAO YILIANG
    • YE YANBAO YILIANG
    • H04N7/36
    • H04N19/523H04N19/117H04N19/14H04N19/172H04N19/174H04N19/176H04N19/187H04N19/46H04N19/61H04N19/82
    • This disclosure is directed to video coding techniques that support normal single layer video coding, or scalable video coding with features such as signal-to-noise ratio (SNR) scalability and spatial scalability. A video coding device may implement these techniques in a video decoder that includes a motion compensation module and a filter. The motion compensation module decodes a prediction frame from a digital video signal, wherein the motion compensation module determines each block of the inter-coded frame from motion vectors encoded in the digital video signal. The filter adaptively filters one or more of the inter-coded blocks based on a signal either encoded or inferred from the digital video signal. In some instances, the video decoder may adaptively apply different filter functions, one in the horizontal and another in the vertical direction, based on the signal. By implementing these techniques, the video decoder may increase the visual quality of the resulting decoded digital video signal while reducing complexity.
    • 本公开针对支持标准单层视频编码或具有诸如信噪比(SNR)可缩放性和空间可缩放性之类的特征的可伸缩视频编码的视频编码技术。 视频编码设备可以在包括运动补偿模块和滤波器的视频解码器中实现这些技术。 运动补偿模块从数字视频信号中解码预测帧,其中运动补偿模块根据编码在数字视频信号中的运动矢量确定帧间编码帧的每个块。 滤波器基于从数字视频信号编码或推断的信号自适应地滤波一个或多个帧间编码块。 在一些情况下,视频解码器可基于信号自适应地应用不同的滤波器函数,一个在水平方向而另一个在垂直方向。 通过实施这些技术,视频解码器可以增加所得到的解码数字视频信号的视觉质量,同时降低复杂度。
    • 3. 发明申请
    • VIDEO CODING WITH FINE GRANULARITY SCALABILITY USING CYCLE-ALIGNED FRAGMENTS
    • 使用周期对齐的片段,具有精细粒度可扩展性的视频编码
    • WO2008008888A3
    • 2008-08-07
    • PCT/US2007073354
    • 2007-07-12
    • QUALCOMM INCBAO YILIANGMALAYATH NARENDRANATHMANJUNATH SHARATHYE YAN
    • BAO YILIANGMALAYATH NARENDRANATHMANJUNATH SHARATHYE YAN
    • H04N7/26
    • H04N19/34
    • The disclosure describes FGS video coding techniques that use cycle-aligned fragments (CAFs). The techniques may perform cycle-based coding of FGS video data block coefficients and syntax elements, and encapsulate cycles in fragments for transmission. The fragments may be cycle-aligned such that a start of a payload of each of the fragments substantially coincides with a start of one of the cycles. In this manner, cycles can be readily accessed via individual fragments. Some cycles may be controlled with a vector mode to scan to a predefined position within a block before moving to another block. In this manner, the number of cycles can be reduced, reducing the number of fragments and associated overhead. The CAFs may be entropy coded independently of one another so that each fragment may be readily accessed and decoded without waiting for decoding of other fragments. Independent entropy coding may permit parallel decoding and simultaneous processing of fragments.
    • 本公开描述了使用循环对准片段(CAF)的FGS视频编码技术。 这些技术可以执行FGS视频数据块系数和语法元素的基于循环的编码,并且将循环封装成用于传输的片段。 片段可以是循环对齐的,使得每个片段的有效载荷的开始基本上与循环中的一个的开始重合。 以这种方式,可以容易地通过各个片段访问周期。 可以通过向量模式来控制一些周期,以便在移动到另一个块之前扫描到块内的预定位置。 以这种方式,可以减少周期数,减少片段的数量和相关的开销。 CAF可以彼此独立地进行熵编码,使得每个片段可以容易地被访问和解码,而不等待其他片段的解码。 独立熵编码可以允许并行解码和片段的同时处理。