Two-step construction method of protograph-based AR4JA codes in deep space communication

Gu Lv, Mingchuan Yang, Hui Li, Ming Li, Xiaofeng Liu
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引用次数: 1

Abstract

This paper discusses the construction of the Accumulate-Repeat-4-Jagged-Accumulate(AR4JA) codes which is suitable for the deep-space communication based on the protograph. Two-step construction method of designing the AR4JA codes whose minimum distance grows linearly with block size, is proposed. Two-step expansion improves the traditional PEG with adding the ACE algorithm for placing edges in a protograph-based code, which brings down the error floor. Compared to the traditional random expansion and the one step expansion like Progressive Edge-Growth(PEG), the two-step construction algorithm aims at constructing the AR4JA codes with high performance and low complexity. Verified by the simulation, the BER performance of the two-step expansion method is similar to the ideal AR4JA codes in the deep space channel condition. With the same Eb/N0, the two-step construction method shows the lower BER than random construction method and one-step extension method through the simulation results.
深空通信中基于原型的AR4JA码两步构建方法
本文讨论了基于protograph的适合深空通信的Accumulate-Repeat-4-Jagged-Accumulate(AR4JA)码的构造。提出了最小距离随块大小线性增长的AR4JA码的两步构建方法。两步扩展改进了传统的PEG,增加了ACE算法,用于在基于原型的代码中放置边缘,从而降低了误差。相对于传统的随机展开和渐进边缘增长(Progressive Edge-Growth, PEG)等一步展开,两步构造算法旨在构造高性能、低复杂度的AR4JA编码。仿真结果表明,两步展开法在深空信道条件下的误码率性能与理想的AR4JA码相当。仿真结果表明,在相同的Eb/N0下,两步构造法的误码率比随机构造法和一步扩展法低。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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