LDPC-Based Iterative Algorithm for Compression of Correlated Sources at Rates Approaching the Slepian-Wolf Bound

F. Daneshgaran, M. Laddomada, M. Mondin
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引用次数: 2

Abstract

This article proposes a novel iterative algorithm based on Low Density Parity Check (LDPC) codes for compression of correlated sources at rates approaching the Slepian-Wolf bound. The setup considered in the article looks at the problem of compressing one source at a rate determined based on the knowledge of the mean source correlation at the encoder, and employing the other correlated source as side information at the decoder which decompresses the first source based on the estimates of the actual correlation. We demonstrate that depending on the extent of the actual source correlation estimated through an iterative paradigm, significant compression can be obtained relative to the case the decoder does not use the implicit knowledge of the existence of correlation.
基于ldpc的相关源趋近Slepian-Wolf界速率压缩迭代算法
本文提出了一种新的基于低密度奇偶校验(LDPC)码的迭代算法,用于以接近Slepian-Wolf界的速率压缩相关源。本文中考虑的设置考虑了以基于编码器中平均源相关性的知识确定的速率压缩一个源的问题,并在解码器中使用另一个相关源作为边信息,解码器根据实际相关性的估计解压缩第一个源。我们证明,根据通过迭代范式估计的实际源相关性的程度,相对于解码器不使用相关性存在的隐式知识的情况,可以获得显著的压缩。
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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