Non-binary protograph-based LDPC codes for short block-lengths

Ben-Yue Chang, D. Divsalar, L. Dolecek
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引用次数: 38

Abstract

This paper presents two complementary constructions of finite-length non-binary protograph-based codes with the focus on the short block-length regime. The first class is based on the existing approaches of applying the copy-and-permute operations to the constituent protograph with unweighted edges, followed by assigning non-binary scales to the edges of the derived graph. The second class is novel and is based on the so-called graph cover of a non-binary protograph: the original protograph has fixed edge scalings and copy-and-permute operations are applied to the edge-weighted protograph. The second class is arguably more restrictive, but in turn it offers simpler design and implementation. We provide design and construction of these non-binary codes for short block-lengths. Performance, cycle distribution and the minimum distance of the binary image of selected codes over AWGN is provided for information block-lengths as low as 64 bits.
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短块长度的非二进制基于原型的LDPC代码
本文提出了基于有限长度非二进制原型码的两种互补结构,并重点讨论了短块长度机制。第一类是基于现有的方法,将复制和置换操作应用于具有未加权边的组成原型图,然后为派生图的边缘分配非二进制尺度。第二类是新颖的,它基于所谓的非二进制原生图的图盖:原始原生图具有固定的边缘缩放,复制和置换操作应用于边缘加权的原生图。第二类的限制更严格,但反过来它提供了更简单的设计和实现。我们提供了这些短块长度的非二进制码的设计和构造。给出了信息块长度低至64位时所选码在AWGN上的性能、周期分布和二值图像的最小距离。
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