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A High-Speed Low-Complexity Reed-Solomon Decoder for Optical Communications

机译:用于光通信的高速低复杂度里德-所罗门解码器

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This paper presents a high-speed low-complexity Reed-Solomon (RS) decoder architecture using a novel pipelined recursive modified Euclidean (PrME) algorithm block for very high-speed optical communications. The RS decoder features a low-complexity key equation solver using a PrME algorithm block. The recursive structure enables the novel low-complexity PrME algorithm block to be implemented. Pipelining and parallelizing allow the inputs to be received at very high fiber-optic rates, and outputs to be delivered at correspondingly high rates with minimum delay. This paper presents the key ideas applied to the design of an 80-Gb/s RS decoder architecture, especially that for achieving high throughput and reducing complexity. The 80-Gb/s 16-channel RS decoder has been designed and implemented using 0.13-μm CMOS technology in a supply voltage of 1.2 V. The proposed RS decoder has a core gate count of 393 K and operates at a clock rate of 625 MHz.
机译:本文提出了一种新型的低复杂度的里德-所罗门(RS)解码器体系结构,该体系结构使用了新颖的流水线递归修改的欧几里得(PrME)算法块进行超高速光通信。 RS解码器具有使用PrME算法模块的低复杂度密钥方程求解器。递归结构使新颖的低复杂度PrME算法块得以实现。流水线化和并行化允许以很高的光纤速率接收输入,并以最小的延迟以相应的高速率发送输出。本文介绍了应用于80 Gb / s RS解码器体系结构的关键思想,特别是实现高吞吐量和降低复杂性的思想。 80 Gb / s 16通道RS解码器是在0.1 V电源电压下使用0.13μmCMOS技术设计和实现的。所建议的RS解码器的核心门数为393 K,时钟速率为625 K兆赫

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