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Soft-Decision Redundant Residue Number System Based Error Correction Coding

机译:基于软决策冗余残差数系统的纠错编码

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摘要

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 1.5dB better as compared to hard decision assisted RRNS decoding.
机译:提出了基于软决策的冗余残数系统(RRNS)辅助错误控制编码,并对其性能进行了评估。 RRNS(n,k)码是最大最小距离分组码,具有与Reed-Solomon(RS)码相同的距离特性。因此,它们的纠错能力由t =(n-k)/ 2给出。提出了不同的比特映射方法,这导致系统的和非系统的RRNS编码器。我们展示了可以调用经典的Chase算法,以便为RRNS码设计软判决检测并利用软信道输出,这提供了每个接收到的二进制数字的相对可靠性。我们发现,与硬决策辅助的RRNS解码相比,基于软决策的RRNS解码至少要好1.5dB。

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