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Construction of Short-Block Nonbinary LDPC Codes Based on Cyclic Codes 被引量:1

Construction of Short-Block Nonbinary LDPC Codes Based on Cyclic Codes
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摘要 In this paper, we focus on shortblock nonbinary LDPC(NB-LDPC) codes based on cyclic codes. Based on Tanner graphs' isomorphism, we present an efficient search algorithm for finding non-isomorphic binary cyclic LDPC codes. Notice that the parity-check matrix H of the resulting code is square and not of full rank, and its row weight and column weight are the same. By replacing the ones in the same column of H with a nonzero element of fi nite fi elds GF(q), a class of NB-LDPC codes over GF(q) is obtained. Numerical results show that the constructed codes perform well over the AWGN channel and have fast decoding convergence. Therefore, the proposed NB-LDPC codes provide a promising coding scheme for low-latency and high-reliability communications. In this paper, we focus on shortblock nonbinary LDPC(NB-LDPC) codes based on cyclic codes. Based on Tanner graphs' isomorphism, we present an efficient search algorithm for finding non-isomorphic binary cyclic LDPC codes. Notice that the parity-check matrix H of the resulting code is square and not of full rank, and its row weight and column weight are the same. By replacing the ones in the same column of H with a nonzero element of fi nite fi elds GF(q), a class of NB-LDPC codes over GF(q) is obtained. Numerical results show that the constructed codes perform well over the AWGN channel and have fast decoding convergence. Therefore, the proposed NB-LDPC codes provide a promising coding scheme for low-latency and high-reliability communications.
出处 《China Communications》 SCIE CSCD 2017年第8期1-9,共9页 中国通信(英文版)
基金 supported in part by National Natural Science Foundation of China under Grants 61372074,91438101,61103143,U1504601,and U1404622 Key Scientific and Technological Project of Henan under Grants 162102310589 and 172102310124
关键词 LDPC码 循环码 多进制 构造 奇偶校验矩阵 AWGN信道 编码方案 搜索算法 nonbinary LDPC codes tanner graph isomorphism iterative decoding
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