正则LDPC卷积码的构造方法及性能评价

Oulfa Laouar, Nadir Derouiche, I. Amamra
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引用次数: 0

摘要

本文提出了三种基于随机或代数结构稀疏矩阵的系统正则ldpc - cc的构造方法。我们概述了ldpc - cc,并比较了Gallager, Mackay-Neal和准循环(QC)构造方法,这些方法由于其纠错效率和低解码复杂度而成为许多无线应用的好选择。在率为1/2的情况下,对于相同大小的奇偶校验矩阵获得相同的编解码复杂度,并在加性高斯白噪声(AWGN)信道上使用Bit翻转(BF)译码算法,模拟了(3,6)正则LDPC卷积码的误码率性能,结果表明Gallager的构造方法(随机)优于Mackay-Neal和QC方法。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Construction Methods and Performance Evaluation of Regular LDPC Convolutional Codes
In this paper, we present three construction methods of systematic regular LDPC-CCs based on randomly or algebraically structured sparse matrices. We provide an overview of LDPC-CCs and compares between Gallager’s, Mackay-Neal and Quasi-Cyclic (QC) construction methods, which are a good choice for many wireless applications due to their errors correction efficiency and low decoding complexity. At a rate-1/2, for the same size of the parity matrix to obtain the same encoding and decoding complexity, and using the Bit Flipping (BF) decoding algorithm over Additive White Gaussian Noise (AWGN) channel, we simulated the BER performance of a (3,6) regular LDPC convolutional codes, where the results showed that Gallager’s construction method (random) outperforms Mackay-Neal and QC ones.
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