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Two-dimensional correction for min-sum decoding of irregular LDPC codes

机译:用于不规则LDPC码的最小和解码的二维校正

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摘要

Two-dimensional (2-D) correction schemes are proposed to improve the performance of conventional min-sum (MS) decoding of irregular low density parity check codes. An iterative procedure based on parallel differential optimization is presented to obtain the optimal 2-D factors. Both density evolution analysis and simulation show that the proposed method provides a comparable performance as belief propagation (BP) decoding while requiring less complexity. Interestingly, the new method exhibits a lower error floor than that of BP decoding. With respect to conventional MS and 1-D normalized MS decodings, the 2-D normalized MS offers a better performance. The 2-D offset MS decoding exhibits a similar behavior.
机译:提出了二维(2-D)校正方案,以提高常规的不规则低密度奇偶校验码的最小和(MS)解码的性能。提出了一种基于并行微分优化的迭代过程,以获得最优的二维因子。密度演化分析和仿真均表明,该方法可提供与置信传播(BP)解码相当的性能,同时所需的复杂度更低。有趣的是,与BP解码相比,新方法的错误率更低。关于常规MS和1-D归一化MS解码,2-D归一化MS提供了更好的性能。 2-D偏移MS解码表现出相似的行为。

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