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Layered Wyner-Ziv Video Coding for Transmission over Unreliable Channels

机译:分层Wyner-Ziv视频编码,用于不可靠信道的传输

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Based on recent works on Wyner-Ziv coding (or lossy source coding with decoder side information), we consider the case with noisy channel and addresses distributed joint source-channel coding, while targeting at the important application of scalable video transmission over wireless networks. In Wyner-Ziv coding, after quantization, Slepian-Wolf coding (SWC) is used to reduce the rate. SWC is traditionally realized by sending syndromes of a linear channel code. Since syndromes of the channel code can only compress but cannot protect, for transmission over noisy channels, additional error protection is needed. However, instead of using one channel code for SWC and one for error protection, our idea is to use a single channel code to achieve both compression and protection. We replace the traditional syndrome-based SWC scheme by the parity-based one, where only parity bits of the Slepian-Wolf channel code are sent. If the amount of transmitted parity bits increases above the Slepian-Wolf limit, the added redundancy is exploited to cope against the noise in the transmission channel. Using IRA codes for practical parity-based SWC, we design a novel layered Wyner-Ziv video coder which is robust to channel failures and thus very suitable for wireless communications. Our simulation results show great advantages of the proposed solution based on joint source-channel coding compared to the traditional approach where source and channel coding are performed separately.
机译:基于Wyner-Ziv编码(或带有解码器辅助信息的有损源编码)的最新工作,我们考虑了噪声通道和地址分布式联合源通道编码的情况,同时针对无线网络上可伸缩视频传输的重要应用。在Wyner-Ziv编码中,量化后,使用Slepian-Wolf编码(SWC)降低速率。传统上,SWC通过发送线性通道代码的校正子来实现。由于信道代码的校验子只能压缩而不能保护,因此对于通过噪声信道的传输,需要附加的错误保护。但是,我们的想法是使用单个通道代码来实现压缩和保护,而不是将单个通道代码用于SWC并将一个通道代码用于错误保护。我们将基于奇偶校验的SWC方案替换为基于奇偶校验的SWC方案,在该方案中,仅发送Slepian-Wolf通道代码的奇偶校验位。如果发送的奇偶校验位的数量增加到超过Slepian-Wolf限制,则可以利用增加的冗余来应对传输通道中的噪声。通过将IRA代码用于基于奇偶校验的实用SWC,我们设计了一种新颖的Wyner-Ziv分层视频编码器,该视频编码器对信道故障具有鲁棒性,因此非常适合无线通信。我们的仿真结果表明,与传统方法分开进行源编码和信道编码相比,基于联合源信道编码的建议解决方案具有很大的优势。

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