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Majority decision based weighted symbol-flipping decoding for nonbinary LDPC codes

机译:非二进制LDPC码基于多数决策的加权符号翻转解码

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A new low-complexity symbol-flipping algorithm based on majority decision to decode nonbinary low-density parity-check (LDPC) codes is proposed. The decoding procedure updates iteratively the hard-decision received symbol vector in search of a valid codeword in the symbol vector space. Only one symbol is changed in each iteration, and symbol flipping function combines the number of failed checks and reliability of the received bits and calculated symbols. Flipped symbol position is determined by majority decision and flipped value is calculated by channel output. And an optional mechanism to avoid infinite loops in high Galois field search is also proposed. Our studies show that the algorithm achieves an appealing tradeoff between performance and complexity over relatively low Galois field for short to medium code length.
机译:提出了一种基于多数决定解码非边值低密度奇偶校验(LDPC)代码的新的低复杂性符号翻转算法。解码过程迭代地更新硬判决接收的符号向量,用于搜索符号矢量空间中的有效码字。在每次迭代中仅改变一个符号,符号翻转功能组合了所接收位和计算符号的失败检查和可靠性的数量。翻转符号位置由多数决定确定,并通过信道输出计算翻转值。还提出了一种可选的机制,以避免在高伽罗瓦场搜索中的无限环。我们的研究表明,该算法在比较低的Galois字段上的性能和复杂性之间实现了吸引人的权衡,短到中等代码长度。

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