首页> 外文会议>Information Theory Workshop, 2004. IEEE >Channel symmetry in Slepian-Wolf code design based on LDPC codes with application to the quadratic Gaussian Wyner-Ziv problem
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Channel symmetry in Slepian-Wolf code design based on LDPC codes with application to the quadratic Gaussian Wyner-Ziv problem

机译:基于LDPC码的Slepian-Wolf码设计中的信道对称性及其在二次高斯Wyner-Ziv问题中的应用

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We consider Slepian-Wolf code design (or source coding with side information) based on LDPC codes. We show that density evolution defined in conventional channel coding can be used in analyzing the Slepian-Wolf coding performance provided that a certain symmetry condition, dubbed dual symmetry, is satisfied by the hypothetical channel between the source and the side information. Exploiting such an analysis. we design an efficient LDPC code based Slepian-Wolf coding scheme and apply it to the quadratic Gaussian Wyner-Ziv problems.
机译:我们考虑基于LDPC码的Slepian-Wolf码设计(或带有辅助信息的源代码)。我们表明,如果源和边信息之间的假设信道满足一定的对称性条件(称为双重对称性),则可以使用常规信道编码中定义的密度演化来分析Slepian-Wolf编码性能。利用这种分析。我们设计了一种基于LDPC码的高效Slepian-Wolf编码方案,并将其应用于二次高斯Wyner-Ziv问题。

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