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Block Markov Superposition Transmission of BCH Codes With Iterative Erasures-and-Errors Decoders

机译:具有迭代擦除和错误解码器的BCH码的块马尔可夫叠加传输

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In this paper, we present the block Markov super-position transmission of BCH (BMST-BCH) codes, which can be constructed to obtain a very low error floor. To reduce the implementation complexity, we design a low complexity iterative sliding-window decoding algorithm, in which only binary and/or erasure messages are processed and exchanged between processing units. The error floor can be predicted by the proposed genie-aided lower bounds, while the waterfall performance can be analyzed by the density evolution method. To evaluate the error floor of the constructed BMST-BCH codes at a very low bit error rate (BER) region, we propose a fast simulation approach. Numerical results show that, at a target BER of 10(-15), the proposed BMST-BCH code with hard-decision can achieve a net coding gain (NCG) of 10.55 dB with 25% overhead, while a soft-decision design can yield an NCG of 10.74 dB. The construction of BMST-BCH codes is flexible to trade off latency against performance at all overheads of interest and may find applications in optical transport networks as an attractive candidate.
机译:在本文中,我们提出了BCH(BMST-BCH)码的块马尔可夫叠加传输,可以将其构造为获得非常低的误差本底。为了降低实现的复杂度,我们设计了一种低复杂度的迭代滑动窗口解码算法,该算法仅处理二进制和/或擦除消息并在处理单元之间交换。通过提出的精灵辅助下界可以预测误差底限,而可以通过密度演化方法来分析瀑布性能。为了在非常低的误码率(BER)区域评估构造的BMST-BCH码的错误底限,我们提出了一种快速仿真方法。数值结果表明,在目标BER为10(-15)的情况下,建议的具有硬判决的BMST-BCH码可以在具有25%的开销的情况下实现10.55 dB的净编码增益(NCG),而软判决设计可以产生10.74 dB的NCG。 BMST-BCH代码的构造很灵活,可以在所有感兴趣的开销上权衡延迟与性能之间的差异,并且可以在光传输网络中找到应用作为有吸引力的候选对象。

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