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Improved Decoding of Binary and Non-Binary LDPC Codes by Probabilistic Shuffled Belief Propagation

机译:概率混洗置信度传播对二进制和非二进制LDPC码的改进解码

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Low-density parity-check (LDPC) codes have proved to be very powerful channel coding schemes with a broad range of applications. However, as maximum-likelihood decoding is utterly complex, suboptimal decoders have to be employed. One of the most popular decoding algorithms of LDPC codes is belief propagation (BP) decoding. In this paper, we present a novel scheduling for belief propagation decoding of LDPC codes. The new approach combines probabilistic scheduling with the known shuffled and check-shuffled serial scheduling algorithms. The resulting probabilistic shuffled and probabilistic check-shuffled decoders show a superior performance in terms of residual bit error rate. The drawback is that the convergence speed is slightly decreased. However, the convergence is still faster than for the standard and probabilistic flooding algorithms. Furthermore, we have adapted the probabilistic flooding schedule and the proposed probabilistic shuffled schedule to the non-binary case. We show that the aforementioned effects on the binary decoder can similarly be observed when applying the different schedules to the decoding of LDPC codes over higher order Galois fields.
机译:低密度奇偶校验(LDPC)码已被证明是非常强大的信道编码方案,具有广泛的应用范围。但是,由于最大似然解码非常复杂,因此必须采用次优解码器。 LDPC码最流行的解码算法之一是置信传播(BP)解码。在本文中,我们提出了一种新的调度,用于LDPC码的置信度传播解码。新方法将概率调度与已知的改组和检查改组的串行调度算法结合在一起。由此产生的概率混洗和概率校验混洗解码器在残留误码率方面表现出优异的性能。缺点是收敛速度略有降低。但是,收敛速度仍然比标准和概率泛洪算法快。此外,我们已经针对非二元情况调整了概率泛洪计划和拟议的概率改组计划。我们显示,当在高阶Galois字段上将不同的调度应用于LDPC码的解码时,可以类似地观察到对二进制解码器的上述影响。

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