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Optimized Design of Finite-Length Separable Circulant-Based Spatially-Coupled Codes: An Absorbing Set-Based Analysis

机译:基于有限可分离循环的空间耦合代码的优化设计:基于吸收集的分析

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摘要

In this paper, we characterize the finite-length performance of separable circulant-based spatially-coupled (SCB-SC) LDPC codes for transmission over the additive white Gaussian noise channel. For a general class of finite-length graph-based codes, it is known that the existence of small absorbing sets causes a performance degradation in the error floor regime. We first present the mathematical conditions for the existence of absorbing sets in binary SCB-SC codes. This analysis enables us to find the exact number of absorbing sets as a function of the design parameters. In particular, our results show that the choice of the cutting vector affects the number of absorbing sets and, therefore, the error floor performance of the code. For a fixed column weight, we find provably optimal cutting vectors that result in the least number of absorbing sets. Furthermore, we extend our analysis to nonbinary SCB-SC codes, where we show that the choice of the cutting vector is not as critical as in the binary case. We provide an algorithm which provably removes the problematic nonbinary absorbing sets from nonbinary SCB-SC codes by informed selection of edge labels. Our simulation results show the superior error floor performance of our designed binary and nonbinary SCB-SC codes compared with binary unstructured and nonbinary quasi-cyclic SC codes available in the open literature.
机译:在本文中,我们表征了可加循环的基于空间耦合(SCB-SC)的LDPC码在加性高斯白噪声信道上传输的有限长度性能。对于一般的基于有限长度图的代码类,已知存在小的吸收集会导致错误基底状态下的性能下降。我们首先介绍二进制SCB-SC代码中存在吸收集的数学条件。这种分析使我们能够根据设计参数找到吸收集的确切数量。特别是,我们的结果表明,剪切向量的选择会影响吸收集的数量,因此会影响代码的错误基底性能。对于固定的色谱柱重量,我们找到了可证明是最佳的切割向量,该向量可导致最少的吸收组数。此外,我们将分析扩展到非二进制SCB-SC代码,其中我们显示出切削矢量的选择并不像在二进制情况下那样关键。我们提供了一种算法,该算法通过明智地选择边缘标签,可从非二进制SCB-SC代码中删除有问题的非二进制吸收集。我们的仿真结果表明,与公开文献中提供的二进制非结构化和非二进制准循环SC代码相比,我们设计的二进制和非二进制SCB-SC代码具有出色的错误基底性能。

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