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首页> 外文期刊>IEEE Transactions on Communications >Asymmetric Slepian-Wolf Coding of Nonstationarily-Correlated M-ary Sources with Sliding-Window Belief Propagation
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Asymmetric Slepian-Wolf Coding of Nonstationarily-Correlated M-ary Sources with Sliding-Window Belief Propagation

机译:具有滑窗信度传播的非平稳相关M元源的不对称Slepian-Wolf编码

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摘要

Asymmetric Slepian-Wolf coding (ASWC) of M-ary sources with nonstationary correlation is a very useful model for many practical problems. An effective implementation of this coding scheme is to binarize each M-ary source into multiple bitplanes which are then compressed by a single binary low-density parity-check (LDPC) code. Though the inter-bitplane correlation of M-ary sources can be exploited at the decoder by the joint-bitplane belief propagation (JBBP) algorithm, accurate online estimation of varying local source correlation still remains a major challenge. To tackle this problem, this paper proposes an M-ary counterpart of the sliding-window belief propagation (SWBP) algorithm to realize simultaneous source recovery and correlation estimation. To search for the optimal sliding-window size, the expected rate is raised as a new criterion. Moreover, an adaptive method is proposed to decide whether correlation reestimation is necessary. The M-ary SWBP (MSWBP) algorithm is then generalized to obtain its 2D form, which can be used to tackle the ASWC of 2D M-ary sources with nonstationary correlation. The developed 1D/2D-MSWBP algorithm inherits all merits of the original binary SWBP algorithm, e.g., near-optimal coding efficiency, low complexity, insensitivity to initial settings, etc., making it a very attractive technique in practice.
机译:具有非平稳相关性的M元源的不对称Slepian-Wolf编码(ASWC)是解决许多实际问题的非常有用的模型。该编码方案的有效实现是将每个Mary源二进制化为多个位平面,然后通过单个二进制低密度奇偶校验(LDPC)码对其进行压缩。尽管可以通过联合位平面置信度传播(JBBP)算法在解码器中利用M元源的位平面间相关性,但准确的在线估计变化的本地源相关性仍然是一个主要挑战。针对这一问题,本文提出了一种滑动窗口置信传播(SWBP)算法的M进制对应项,以实现同时的源恢复和相关估计。为了搜索最佳的滑动窗口大小,将预期比率提高为新标准。此外,提出了一种自适应方法来确定是否需要相关估计。然后,将Mary SWBP(MSWBP)算法泛化以获得其2D形式,该形式可用于解决具有非平稳相关性的2D Mary源的ASWC。所开发的1D / 2D-MSWBP算法继承了原始二进制SWBP算法的所有优点,例如接近最佳的编码效率,低复杂度,对初始设置不敏感等,这使其在实践中非常有吸引力。

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