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BP-LED Decoding Algorithm for LDPC Codes Over AWGN Channels

机译:AWGN信道上LDPC码的BP-LED解码算法

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摘要

A new method is presented for low-complexity near-maximum-likelihood (ML) decoding of low-density parity check (LDPC) codes over the additive white Gaussian noise channel. The proposed method termed belief-propagation list erasure decoding (BP-LED) is based on erasing carefully chosen unreliable bits performed in case of BP decoding failure. A strategy of introducing erasures into the received vector and a new erasure decoding algorithm are proposed. The new erasure decoding algorithm, called list erasure decoding, combines ML decoding over the BEC with list decoding applied if the ML decoder fails to find a unique solution. The asymptotic exponent of the average list size for random regular LDPC codes from the Gallager ensemble is analyzed. Furthermore, a few examples of irregular quasi-cyclic LDPC as well as randomly constructed regular LDPC codes of short and moderate lengths are studied by simulations and their performance is compared to the tightened upper bound on the LDPC ensemble-average performance and the upper bound on the average performance of random linear codes under ML decoding. A comparison of the BP decoding and BP-LED pertimmance of the WiMAX standard codes and performance of the near-ML BEAST decoding are presented. The new algorithm is applied to decoding a short nonbinary (NB) LDPC code over extensions of the binary Galois field. The obtained simulation results are compared to the tightened upper bound on the ensemble-average performance of the binary image of regular NB LDPC codes.
机译:提出了一种新的方法,用于在加性高斯白噪声信道上对低密度奇偶校验(LDPC)码进行低复杂度的接近最大似然(ML)解码。所提出的被称为信念传播列表擦除解码(BP-LED)的方法基于擦除在BP解码失败的情况下执行的精心选择的不可靠位。提出了将擦除引入接收向量的策略和一种新的擦除解码算法。如果ML解码器无法找到唯一的解决方案,则新的擦除解码算法称为列表擦除解码,它将通过BEC进行的ML解码与应用的列表解码相结合。分析了来自Gallager集合的随机规则LDPC码的平均列表大小的渐近指数。此外,还通过仿真研究了一些不规则的准循环LDPC以及随机构造的短而中等长度的LDPC码的示例,并将其性能与LDPC整体平均性能的严格上限和LDPC的上限进行了比较。 ML解码下随机线性码的平均性能。给出了WiMAX标准代码的BP解码和BP-LED导通性能以及近ML BEAST解码性能的比较。该新算法适用于对二进制Galois字段的扩展范围内的短非二进制(NB)LDPC码进行解码。将获得的仿真结果与常规NB LDPC码的二进制图像的整体平均性能的严格上限进行比较。

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