A Differential Binary Message-Passing LDPC Decoder

N. Mobini, A. Banihashemi, S. Hemati
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引用次数: 39

Abstract

In this paper, we propose a binary message-passing algorithm for decoding low-density parity-check (LDPC) codes. The algorithm substantially improves the performance of purely hard-decision iterative algorithms with a small increase in the memory requirements and the computational complexity. We associate a reliability value to each nonzero element of the code's parity-check matrix, and differentially modify this value in each iteration based on the sum of the extrinsic binary messages from the check nodes. For the tested random and finite-geometry LDPC codes, the proposed algorithm can achieve performance as close as 1.3 dB and 0.7 dB to that of belief propagation (BP) at the error rates of interest, respectively. This is while, unlike BP, the algorithm does not require the estimation of channel signal to noise ratio. Low memory and computational requirements and binary message-passing make the proposed algorithm attractive for high-speed low-power applications.
差分二进制消息传递LDPC解码器
本文提出了一种用于低密度奇偶校验(LDPC)码解码的二进制消息传递算法。该算法大大提高了纯硬决策迭代算法的性能,但内存需求和计算复杂度略有增加。我们将可靠性值与代码的奇偶校验矩阵的每个非零元素关联起来,并根据来自校验节点的外部二进制消息的总和在每次迭代中对该值进行差分修改。对于已测试的随机和有限几何LDPC码,该算法在感兴趣错误率下的性能分别接近置信传播(BP)的1.3 dB和0.7 dB。与BP不同的是,该算法不需要估计信道信噪比。低内存和计算需求以及二进制消息传递使该算法对高速低功耗应用具有吸引力。
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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