标题: 适用于里德所罗门码之适应性信念传递解码法则其效能改进之研究
Performance Enhancement of Adaptive Belief-Propagation Decoding for Reed-Solomon Codes
作者: 萧佳容
Hsaio, Chia-Jung
王忠炫
Wang, Chung-Hsuan
电信工程研究所
关键字: 里德所罗门码;适应性信念传递解码;Reed-Solomon Codes;Adaptive Belief-Propagation Decoding
公开日期: 2012
摘要: 由于里德所罗门码的良好错误更正能力常被应用在如数位通讯与数位储存媒体中,为目前被广泛使用的错误控制码之一。解码方面,目前已知软式决策解码相较于传统的硬式决策解码器有明显的改善。但软式决策解码可能会面临高解码复杂度的困难,因此有学者针对复杂度与错误率的权衡提出了相关的研究,包括基于信任度解码与叠代解码等等,其中本论文对叠代解码进行讨论。Jiang 和 Narayanan 于2006年提出了一种利用适应性校验矩阵,对里德所罗门码进行软式输出输入解码的演算法 (JN演算法)。而于本篇论文中,我们将讨论造成JN演算法解码失败的原因,包括JN演算法中高信任度位置错误以及JN演算法在叠代过程中收敛至错误的合法码字所造成的影响,并基于讨论提出适当的演算法来避免此问题,并以1995 年由Fossorier和Lin所提出的OSD演算法辅助JN在叠代过程中的讯息传递机制,并增进其解码效能。最后综合论文中提出的演算法和JN-OSD(1)演算法比较,在可加性白色高斯杂讯通道并使用双相位键移调变之下,大约有0.5 - 2.0 dB的效能改善。
Reed-Solomon (RS) codes have been the error-correction codes of choice in many communication systems because of their good correction capability. For the decoding of RS codes, it is known that soft-decision decoding (SDD) of RS codes provides significant performance gain over algebraic hard decision decoding (HDD). There are many researches including reliability-based decoding and iterative decoding which are devoted to better trade-off between the decoding complexity and performance because of the high complexity of SDD. In 2006, Jiang and Narayanan (JN) proposed an iterative soft-in soft-out decoding algorithm of RS codes by adapting the parity check matrix. In this thesis, we discuss the reasons of decoding failure in the JN algorithm. Based on our discussion, we propose different algorithms to avoid the influence of the errors in the most reliable positions and the output of JN convergence to an erroneous valid codeword during iterations. We propose the algorithms using the Ordered Statistic Decoding algorithm which was proposed in 1995 by Fossorier and Lin to modify the message passing rule during the iterations in JN algorithm and helps to improve the decoding performance. Finally, compared with the original JN-OSD(1) algorithm, our design has about a 0.5-2.0dB coding gain while decoding RS codes in the additive white Gaussian noise channel under binary phase shift keying Modulation.
URI: http://140.113.39.130/cdrfb3/record/nctu/#GT079913542
http://hdl.handle.net/11536/49321
显示于类别:Thesis


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