Title :
A 2.56 Gb/s Soft RS (255, 239) Decoder Chip for Optical Communication Systems
Author :
Yi-Min Lin ; Chih-Hsiang Hsu ; Hsie-Chia Chang ; Chen-Yi Lee
Author_Institution :
SK Hynix Memory Solutions, San Jose, CA, USA
Abstract :
Due to high transmission rate requirement for optical communication systems, the growing uncertainty of received signals results in the limited transmission distance. In this paper, a decision-confined soft RS decoder chip is proposed to enhance the error correcting performance with area-efficient architectures. Instead of generating numerous possible candidate codewords and determining the most likely one as output codeword, our approach produces only one codeword by confining the degree of error location polynomial. Therefore, hardware complexity is significantly reduced by eliminating decision making unit. Moreover, an iteration-reduced RiBM algorithm is provided to enlarge the coding gain by using more least reliable positions (LRPs) in the limited operation latency. According to simulation results, our proposed soft RS (255, 239; 8) decoder with 5 LRPs outperforms 0.4 dB at 10-4 codeword error rate (CER) as compared to hard RS decoders. Implemented in standard CMOS 90 nm technology, the soft decoder chip can achieve 2.56 Gb/s throughput with similar complexity as a hard decoder. It can fit well for 10-40 Gb/s with 16 RS decoders in optical fiber systems and 2.5 Gb/s GPON applications.
Keywords :
Reed-Solomon codes; error correction codes; optical fibre communication; CER; CMOS technology; GPON application; LRP; RS 239 decoder chip; RS 8 decoder chip; Reed-Solomon code; bit rate 2.56 Gbit/s; codeword error rate; coding gain; decision confined soft RS 255 decoder chip; error correcting performance; error location polynomial; hard RS decoder; hardware complexity; iteration reduced RiBM algorithm; least reliable positions; optical fiber communication system; transmission distance; Complexity theory; Decoding; Hardware; Mathematical model; Optical fiber communication; Polynomials; Error correction code; Reed-Solomon (RS) code; optical communication;
Journal_Title :
Circuits and Systems I: Regular Papers, IEEE Transactions on
DOI :
10.1109/TCSI.2014.2298282