Source coding with side information for binary memoryless sources

I. Bocharova, B. Kudryashov
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Abstract

In this paper, we study a classical problem of source coding with side information available at the decoder. This problem is known as the Wyner-Ahlswede-Korner (WAK) problem. Nowadays, the interest in this problem is related to the concept of distributed source coding which implies coding of correlated sources under restriction that their encoders cannot cooperate. Most of the practical coding schemes consider a specific case of the binary symmetric source with uniform distribution and side information assumed to be perfectly known to the decoder. In this paper, we concentrate on a more complicated model of the binary source. Moreover, we consider a case when side information is lossy encoded. First we generalize the approach by Gu et al. [1] in order to obtain a lower bound on the achievable rates for a general binary source. Then, a new practical “multi-class” coding scheme for this binary source with uncoded binary side information is suggested. Simulation results for LDPC-based coding for both binary symmetric and general binary sources are presented for scenarios with trellis-coded and uncoded side information, respectively. Comparisons with the previously known numerical results are presented.
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带有二进制无内存源侧信息的源编码
在本文中,我们研究了一个经典的在解码器处有侧信息的源编码问题。这个问题被称为Wyner-Ahlswede-Korner (WAK)问题。目前,人们对这一问题的兴趣与分布式源编码的概念有关,分布式源编码意味着在编码器不能合作的限制下对相关源进行编码。大多数实际的编码方案考虑的是具有均匀分布的二进制对称源和假设解码器完全知道的侧信息的特定情况。在本文中,我们集中于一个更复杂的二元源模型。此外,我们还考虑了侧信息是有损编码的情况。首先,我们推广Gu等人[1]的方法,以获得一般二进制源的可实现速率的下界。在此基础上,提出了一种具有未编码二进制边信息的二进制源的实用“多类”编码方案。本文给出了基于ldpc编码的二进制对称源和一般二进制源的仿真结果,分别针对栅格编码和未编码的侧信息进行了仿真。并与以前已知的数值结果进行了比较。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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