A High-Throughput QC-LDPC Decoder for Near-Earth Application

Shixian Li, Qichen Zhang, Yun Chen, Xiaoyang Zeng
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引用次数: 2

Abstract

Turbo-like decoding message passing (TDMP) scheduling, which is suitable for quasi-cyclic low-density parity-check (QC-LDPC) codes, can obtain better decoding performance and shorter convergence time than two-phase message passing (TPMP). Normalized min-sum algorithm (NMSA) is used to reduce complexity of soft message processing unit. In this paper, we propose a (8176, 7154) QC-LDPC decoder for Consultative Committee for Space Data Systems (CCSDS) standard. In order to avoid memory access conflicts, two cyclic-shifted identity matrices forming a submatrix are processed individually. The decoder is synthesized by TSMC 65nm CMOS process and can achieve a throughput of 4.1Gb/s at clock frequency of 380MHz.
近地应用的高通量QC-LDPC解码器
与两相消息传递(TPMP)相比,适用于准循环低密度奇偶校验(QC-LDPC)码的类涡轮解码消息传递(TDMP)调度可以获得更好的解码性能和更短的收敛时间。采用归一化最小和算法(NMSA)降低软消息处理单元的复杂度。在本文中,我们为空间数据系统咨询委员会(CCSDS)标准提出了一种(8176,7154)QC-LDPC解码器。为了避免内存访问冲突,形成子矩阵的两个循环移位单位矩阵被单独处理。该解码器采用台积电65nm CMOS工艺合成,在时钟频率为380MHz时可实现4.1Gb/s的吞吐量。
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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