Low-complexity architecture for Chase soft-decision Reed-Solomon decoding

Y. Lu, Shen-Ming Chung, Ming-Der Shieh
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引用次数: 0

Abstract

Soft-decision decoding of Reed-Solomon (RS) codes can achieve good coding gain by using the probability information from the channel. Among various soft-decision algorithms, the Chase algorithm has moderate performance and rational complexity and hence is usually designed for hardware implementation. Chase-type decoders, however, still have much higher complexity than that of conventional hard-decision decoders. This paper proposes a reduced-complexity Chase (RCC) algorithm and its corresponding high-speed VLSI architecture. With the developed fast and efficient decision-making scheme, the resulting hardware complexity is greatly reduced while keeping the error correction performance comparable to that of the Chase decoders. For a (255, 239) RS code, experimental results show that the proposed decoder design has at least 44.6% improvement in area-time complexity as compared to the related works.
Chase软判决Reed-Solomon解码的低复杂度架构
利用信道的概率信息对RS码进行软判决译码,可以获得较好的编码增益。在各种软决策算法中,Chase算法性能适中,复杂度合理,通常设计用于硬件实现。然而,追逐型解码器仍然比传统的硬决策解码器具有更高的复杂性。本文提出了一种低复杂度追踪算法及其相应的高速VLSI架构。通过开发的快速高效的决策方案,大大降低了硬件复杂度,同时保持了与Chase解码器相当的纠错性能。对于(255,239)RS码,实验结果表明,该译码器的区域时间复杂度比其他译码器至少提高了44.6%。
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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