Multiple Descriptions in the Wyner-Ziv Setting

Jia Wang, Xiaolin Wu, Songyu Yu, Jun Sun
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引用次数: 14

Abstract

We propose a new scheme of multiple descriptions in the Wyner-Ziv setting (MD-WZ). The two side decoders of MD-WZ use two different side information (SI) streams. Both SI streams are available to the central decoder, but none to the encoder. We derive an achievable region (inner bound) for this MD-WZ system for general source and SI. If the source and SI are correlated Gaussian and for quadratic distortion metric, the tight bound is obtained. Our result is an extension of Ozarow's result on multiple descriptions of Gaussian source without SI. The MD-WZ coding scheme is shown to have a property of practical significance. For symmetric case where the joint distributions of the source and the two SI are the same and the two channels are balanced, interchanging the two channels causes no performance loss for Gaussian source. Considering that the existing multi-description video coding methods suffer from the notorious drifting problem induced by channels interchange, this work lends a theoretical support to distributed multi-description video coding in the Wyner-Ziv setting
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Wyner-Ziv设定中的多重描述
我们提出了一种新的Wyner-Ziv设置下的多重描述方案(MD-WZ)。MD-WZ的两侧解码器使用两种不同的侧信息(SI)流。两个SI流都可用于中央解码器,但没有一个用于编码器。我们推导了该MD-WZ系统在通用源和SI下的可实现区域(内界)。如果源和SI是高斯相关的,对于二次失真度量,得到了紧界。我们的结果是对Ozarow关于不含SI的高斯源的多重描述的结果的推广。证明了MD-WZ编码方案具有实际意义。对于源和两个SI的联合分布相同且两个通道平衡的对称情况,交换两个通道对高斯源没有性能损失。考虑到现有的多描述视频编码方法存在信道交换引起的严重漂移问题,本研究为Wyner-Ziv设置下的分布式多描述视频编码提供了理论支持
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