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Modified Low-Complexity Chase Soft-Decision Decoder of Reed-Solomon Codes

机译:里德-所罗门码的低复杂度追赶软判决解码器

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Reed-Solomon (RS) codes are widely used as error-correcting codes in digital communication and storage systems. Algebraic soft-decision decoding (ASD) of RS codes can achieve substantial coding gain with polynomial complexity. Among practical ASD algorithms, the low-complexity chase (LCC) algorithm that tests 2~η vectors can achieve similar or higher coding gain with lower complexity. For applications such as magnetic recording, the performance of the LCC decoding is degraded by the inter-symbol interference from the channel. Improving the performance of the LCC decoding requires larger η, which leads to higher complexity. In this paper, a modified LCC (MLCC) decoding is proposed by adding erasures to the test vectors. With the same η, the proposed algorithm can achieve much better performance than the original LCC decoding. One major step of the LCC and MLCC decoding is the interpolation. To reduce the complexity of the interpolation, this paper also proposed a prioritized interpolation scheme to test a small proportion of the vectors at a time, starting with the ones with higher reliabilities. For a (458, 410) RS code, by testing 1/8 of the vectors at a time, the area requirement of the MLCC decoder with η = 8 can be reduced to 57%, and the average decoding latency is reduced to 73%.
机译:Reed-Solomon(RS)码被广泛用作数字通信和存储系统中的纠错码。 RS码的代数软判决解码(ASD)可以实现具有多项式复杂度的可观的编码增益。在实用的ASD算法中,测试2〜η个向量的低复杂度追赶(LCC)算法可以以较低的复杂度实现相似或更高的编码增益。对于诸如磁记录的应用,由于来自信道的符号间干扰,LCC解码的性能降低。改善LCC解码的性能需要更大的η,这导致更高的复杂度。本文提出了一种改进的LCC(MLCC)解码,方法是将擦除添加到测试向量。在相同的η的情况下,所提出的算法可以比原始的LCC解码获得更好的性能。 LCC和MLCC解码的主要步骤之一是内插。为了降低插值的复杂度,本文还提出了一种优先插值方案,可以一次测试一小部分矢量,从具有较高可靠性的矢量开始。对于(458,410)RS码,通过一次测试1/8个向量,可以将η= 8的MLCC解码器的面积要求降低到57%,平均解码延迟降低到73% 。

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