A comparison of adaptive belief propagation and the best graph algorithm for the decoding of linear block codes

Aditi Kothiyal, O. Takeshita
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引用次数: 14

Abstract

In this paper, two iterative message passing algorithms based on belief propagation proposed for the decoding of any binary linear block code are compared. The innovation of these algorithms lies in the fact that the structure of the graph of the parity check matrix is adaptively modified to render it suitable to belief propagation decoding. The modification is done such that the least reliable bits received from the channel are leaves of the graph. These algorithms perform favorably when compared with existing hard and iterative soft decision decoding algorithms in terms of error rate while maintaining a complexity polynomial in block length. It was found that while these two algorithms are conceptually similar, their performance in terms of word error rate (as a function of signal-to-noise ratio), decoding time (average number of iterations) and the updated bit reliabilities are very different
线性分组码译码中自适应信念传播算法与最佳图算法的比较
本文比较了两种基于信念传播的迭代消息传递算法对任意二进制线性分组码的译码效果。这些算法的创新之处在于自适应地修改了奇偶校验矩阵图的结构,使其适合于信念传播译码。这种修改使得从信道接收到的最不可靠的比特是图的叶子。与现有的硬译码算法和迭代软译码算法相比,这些算法在错误率方面表现良好,同时保持了块长度的复杂度多项式。研究发现,虽然这两种算法在概念上是相似的,但它们在字错误率(作为信噪比的函数)、解码时间(平均迭代次数)和更新位可靠性方面的性能却有很大不同
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