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Serial Decoding Algorithm with Continuous Backtracking for LDPC Convolutional Codes

机译:LDPC卷积码连续回溯串行解码算法

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摘要

Two main decoding algorithms are usually used for low-density parity-check convolutional (LDPC-C) codes, belief propagation algorithm and on-demand variable node activation algorithm. However like the decoding for block codes, the iterations of these algorithms cannot utilize the messages of newly joined variable nodes within the next iteration windows continuously, limiting the decoding performance. Thus a serial decoding algorithm with continuous backtracking for LDPC-C codes is proposed. Based on the iteration windows, the proposed algorithm performs advance iteration with two adjacent iteration windows and then backtracks to the preceding iteration window. During each iteration the latest updated and newly joined messages are utilized. The whole iteration uses the backtracking continuously until all the results output. Different LDPC-C codes are used to test the performance of proposed algorithm. Simulation results show that the proposed algorithm outperforms other algorithms and requires less number of iterations, improving the decoding convergence rate.
机译:两个主要解码算法通常用于低密度奇偶校验卷积(LDPC-C)代码,信念传播算法和按需变量节点激活算法。然而,与块代码的解码一样,这些算法的迭代不能连续地利用新加入的可变节点的消息,连续地限制解码性能。因此,提出了一种具有用于LDPC-C代码的连续回溯串行解码算法。基于迭代窗口,所提出的算法使用两个相邻的迭代窗口执行预先迭代,然后对前面的迭代窗口进行备份。在每次迭代期间,使用最新的更新和新加入的消息。整个迭代连续使用BackTracking,直到所有结果输出。不同的LDPC-C代码用于测试所提出的算法的性能。仿真结果表明,该算法优于其他算法,需要少量的迭代,提高解码收敛速率。

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