A fast displacement-based Peterson decoder

C. Senger, F. Kschischang
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Abstract

A displacement-based approach for solving the Peterson system that arises in the decoding of generalized Reed-Solomon codes is presented. The main contribution is an LU factorization algorithm for the corresponding Toeplitz coefficient matrix, implemented as a sequence of vector-matrix multiplications each with linear instead of quadratic time-complexity, resulting in overall quadratic decoding time-complexity.
基于位移的快速彼得森解码器
提出了一种基于位移的求解广义Reed-Solomon码解码中出现的Peterson系统的方法。主要贡献是对应Toeplitz系数矩阵的LU分解算法,实现为向量矩阵乘法序列,每个乘法具有线性而不是二次时间复杂度,从而导致总体二次解码时间复杂度。
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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