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Error Resilience in Current Distributed Video Coding Architectures

机译:当前分布式视频编码架构中的错误恢复能力

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In distributed video coding the signal prediction is shifted at the decoder side, giving therefore most of the computational complexity burden at the receiver. Moreover, since no prediction loop exists before transmission, an intrinsic robustness to transmission errors has been claimed. This work evaluates and compares the error resilience performance of two distributed video coding architectures. In particular, we have considered a video codec based on the Stanford architecture (DISCOVER codec) and a video codec based on the PRISM architecture. Specifically, an accurate temporal and rate/distortion based evaluation of the effects of the transmission errors for both the considered DVC architectures has been performed and discussed. These approaches have been also compared with H.264/AVC, in both cases of no error protection, and simple FEC error protection. Our evaluations have highlighted in all cases a strong dependence of the behavior of the various codecs to the content of the considered video sequence. In particular, PRISM seems to be particularly well suited for low-motion sequences, whereas DISCOVER provides better performance in the other cases.
机译:在分布式视频编码中,信号预测在解码器侧转移,因此给接收器带来了大部分计算复杂性负担。此外,由于在传输之前不存在预测环,因此已经要求对传输错误具有固有的鲁棒性。这项工作评估和比较了两种分布式视频编码体系结构的错误恢复性能。特别是,我们考虑了基于斯坦福架构的视频编解码器(DISCOVER编解码器)和基于PRISM架构的视频编解码器。具体地,已经针对两个所考虑的DVC架构执行了精确的基于时间和速率/失真的传输错误的影响的评估,并进行了讨论。在没有错误保护和简单FEC错误保护的情况下,这些方法也已与H.264 / AVC进行了比较。我们的评估在所有情况下都强调了各种编解码器的行为与所考虑的视频序列的内容之间的强烈依赖性。特别是PRISM似乎特别适合于低运动序列,而DISCOVER在其他情况下则提供了更好的性能。

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