基于软判决冗余数系统的纠错编码

T. Liew, L. Yang, L. Hanzo
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引用次数: 24

摘要

提出了基于软决策的冗余数系统(RRNS)辅助错控编码,并对其性能进行了评价。RRNS(n,k)码是一种最大最小距离分组码,具有与RS (Reed-Solomon)码相同的距离属性。因此它们的纠错能力由t=(n-k)/2给出。不同的位映射方法导致了系统和非系统的RRNS编码器。我们证明了经典的Chase算法可以被调用,以便为RRNS编码设计软判决检测,并利用软信道输出,提供每个接收到的二进制数字的相对可靠性。我们发现基于软决策的RRNS解码比硬决策辅助的RRNS解码至少好1.5 dB。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Soft-decision redundant residue number system based error correction coding
Soft-decision-based redundant residue number system (RRNS)-assisted error control coding is proposed and its performance is evaluated. An RRNS(n,k) code is a maximum-minimum distance block code, exhibiting identical distance properties to Reed-Solomon (RS) codes. Hence their error correction capability is given by t=(n-k)/2. Different bit mapping methods are proposed, which result in systematic and non-systematic RRNS encoders. We show that the classic Chase algorithm can be invoked, in order to contrive soft-decision detection for RRNS codes and to exploit the soft channel outputs, which provide the relative reliability of each of the received binary digits. We found that soft decision-based RRNS decoding is at least 1.5 dB better compared to hard decision-assisted RRNS decoding.
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