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Design and Implementation of a Low-Complexity Reed-Solomon Decoder for Optical Communication Systems

机译:用于光通信系统的低复杂度里德-所罗门解码器的设计与实现

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摘要

A low-complexity Reed-Solomon (RS) decoder design based on the modified Euclidean (ME) algorithm proposed by Truong is presented in this paper. Low complexity is achieved by reformulating Truong's ME algorithm using the proposed polynomial manipulation scheme so that a more compact polynomial representation can be derived. Together with the developed folding scheme and simplified boundary cell, the resulting design effectively reduces the hardware complexity while meeting the throughput requirements of optical communication systems. Experimental results demonstrate that the developed RS(255, 239) decoder, implemented in the TSMC 0.18 pm process, can operate at up to 425 MHz and achieve a throughput rate of 3.4 Gbps with a total gate count of 11,759. Compared to related works, the proposed decoder has the lowest area requirement and the smallest area-time complexity.
机译:本文提出了一种基于Truong提出的改进的Euclidean(ME)算法的低复杂度Reed-Solomon(RS)解码器设计。通过使用提出的多项式处理方案重新构造Truong的ME算法,可以实现较低的复杂度,从而可以得出更紧凑的多项式表示。结合开发的折叠方案和简化的边界单元,最终的设计有效地降低了硬件复杂性,同时满足了光通信系统的吞吐量要求。实验结果表明,以台积电0.18 pm工艺实现的已开发的RS(255,239)解码器可以在最高425 MHz的频率下运行,并实现3.4 Gbps的吞吐速率,总门数为11,759。与相关工作相比,所提出的解码器具有最低的区域需求和最小的区域时间复杂度。

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