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Layered Wyner-Ziv video coding for noisy channels

机译:适用于嘈杂频道的分层Wyner-Ziv视频编码

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摘要

The growing popularity of video sensor networks and video celluar phones has generated the need for low-complexity and power-efficient multimedia systems that can handle multiple video input and output streams. While standard video coding techniques fail to satisfy these requirements, distributed source coding is a promising technique for ??uplink?? applications. Wyner-Ziv coding refers to lossy source coding with side information at the decoder. Based on recent theoretical result on successive Wyner-Ziv coding, we propose in this thesis a practical layered Wyner-Ziv video codec using the DCT, nested scalar quantizer, and irregular LDPC code based Slepian-Wolf coding (or lossless source coding with side information) for noiseless channel. The DCT is applied as an approximation to the conditional KLT, which makes the components of the transformed block conditionally independent given the side information. NSQ is a binning scheme that facilitates layered bit-plane coding of the bin indices while reducing the bit rate. LDPC code based Slepian-Wolf coding exploits the correlation between the quantized version of the source and the side information to achieve further compression. Different from previous works, an attractive feature of our proposed system is that video encoding is done only once but decoding allowed at many lower bit rates without quality loss. For Wyner-Ziv coding over discrete noisy channels, we present a Wyner-Ziv video codec using IRA codes for Slepian-Wolf coding based on the idea of two equivalent channels. For video streaming applications where the channel is packet based, we apply unequal error protection scheme to the embedded Wyner-Ziv coded video stream to find the optimal source-channel coding trade-off for a target transmission rate over packet erasure channel.
机译:视频传感器网络和视频蜂窝电话的日益普及,产生了对可处理多个视频输入和输出流的低复杂度和高能效多媒体系统的需求。虽然标准的视频编码技术不能满足这些要求,但是分布式源编码是用于“上行链路”的有前途的技术。应用程序。 Wyner-Ziv编码是指在解码器处具有辅助信息的有损源编码。基于有关连续Wyner-Ziv编码的最新理论结果,本文提出了一种实用的分层Wyner-Ziv视频编解码器,该编解码器使用DCT,嵌套标量量化器和基于不规则LDPC码的Slepian-Wolf编码(或带有边信息的无损源编码) )用于无噪声通道。 DCT作为条件KLT的近似值应用,这使转换后的块的组件在给定辅助信息的情况下有条件地独立。 NSQ是一种合并方案,可在降低比特率的同时促进对bin索引的分层位平面编码。基于LDPC码的Slepian-Wolf编码利用源的量化版本与辅助信息之间的相关性来实现进一步的压缩。与以前的工作不同,我们提出的系统的一个吸引人的特征是,视频编码仅执行一次,但允许以许多较低的比特率进行解码而不会造成质量损失。对于离散噪声信道上的Wyner-Ziv编码,我们基于两个等效信道的思想,提出了使用IRA码进行Slepian-Wolf编码的Wyner-Ziv视频编解码器。对于通道是基于分组的视频流应用,我们对嵌入式Wyner-Ziv编码的视频流应用了不相等的错误保护方案,以找到针对分组擦除信道上的目标传输速率的最佳源通道编码。

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    Xu Qian;

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  • 年度 2005
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  • 原文格式 PDF
  • 正文语种 en_US
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