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Noise-aided gradient descent bit-flipping decoders approaching maximum likelihood decoding

机译:接近最大似然解码的噪声辅助梯度下降比特翻转解码器

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In the recent literature, the study of iterative LDPC decoders implemented on faulty-hardware has led to the counter-intuitive conclusion that noisy decoders could perform better than their noiseless version. This peculiar behavior has been observed in the finite codeword length regime, where the noise perturbating the decoder dynamics help to escape the attraction of fixed points such as trapping sets. In this paper, we will study two recently introduced LDPC decoders derived from noisy versions of the gradient descent bit-flipping decoder (GDBF). Although the GDBF is known to be a simple decoder with limited error correction capability compared to more powerful softdecision decoders, it has been shown that the introduction of a random perturbation in the decoder could greatly improve the performance results, approaching and even surpassing belief propagation or min-sum based decoders. For both decoders, we evaluate the probability of escaping from a Trapping set, and relate this probability to the parameters of the injected noise distribution, using a Markovian model of the decoder transitions in the state space of errors localized on isolated trapping sets. In a second part of the paper, we present a modified scheduling of our algorithms for the binary symmetric channel, which allows to approach maximum likelihood decoding (MLD) at the cost of a very large number of iterations.
机译:在最近的文献中,对在故障硬件上实现的迭代LDPC解码器的研究得出了与直觉相反的结论,即噪声解码器的性能可能优于无噪声版本。在有限的码字长度范围内已经观察到这种特殊的行为,在这种情况下,干扰解码器动态的噪声有助于逃避固定点(例如陷印集)的吸引。在本文中,我们将研究两种新近推出的LDPC解码器,它们是从梯度下降比特翻转解码器(GDBF)的嘈杂版本中推导出来的。尽管与功能更强大的软判决解码器相比,GDBF是一种具有有限纠错能力的简单解码器,但已证明在解码器中引入随机扰动可以极大地改善性能结果,接近甚至超过置信传播或基于最小和的解码器。对于这两种解码器,我们使用位于孤立陷阱集上的错误状态空间中的解码器转换的马尔可夫模型,来评估从陷阱集逃逸的概率,并将该概率与注入的噪声分布的参数相关联。在本文的第二部分中,我们提出了针对二进制对称信道的算法的改进调度,该调度允许以极大的迭代次数为代价来实现最大似然解码(MLD)。

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