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Estimation-Theoretic Delayed Decoding of Predictively Encoded Video Sequences

机译:预测编码视频序列的估计理论延迟解码

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Current video coding schemes employ motion compensation to exploit the fact that the signal forms an auto-regressive process along the motion trajectory, and remove temporal redundancies with prior reconstructed samples via prediction. However, the decoder may, in principle, also exploit correlations with received encoding information of future frames. In contrast to current decoders that reconstruct every block immediately as the corresponding quantization indices are available, we propose an estimation-theoretic delayed decoding scheme which leverages quantization and motion information of one or more future frames to refine the reconstruction of the current block. The scheme, implemented in the transform domain, efficiently combines all available (including future) information in an appropriately derived conditional pdf, to obtain the optimal delayed reconstruction of each transform coefficient in the frame. Experiments demonstrate substantial gains over the standard H.264 decoder. The scheme learns the autoregressive model from information available to the decoder, and compatibility with the standard syntax and existing encoders is retained.
机译:当前的视频编码方案采用运动补偿来利用信号沿着运动轨迹形成自回归过程这一事实,并通过预测来去除先前重构样本的时间冗余。但是,解码器原则上也可以利用与接收到的未来帧的编码信息的相关性。与当相应的量化索引可用时立即重构每个块的当前解码器相比,我们提出了一种估计理论延迟解码方案,该方案利用一个或多个未来帧的量化和运动信息来细化当前块的重构。在变换域中实施的方案将所有可用(包括将来的)信息有效地组合到适当导出的条件pdf中,以获得帧中每个变换系数的最佳延迟重建。实验证明,与标准的H.264解码器相比,它具有明显的优势。该方案从解码器可用的信息中学习自回归模型,并保留了与标准语法和现有编码器的兼容性。

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