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Iterative reliability-based decoding of linear block codes with adaptive belief propagation

机译:基于自适应置信度传播的线性分组码基于迭代可靠性的解码

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摘要

In this letter, an iterative decoding algorithm for linear block codes combining reliability-based decoding with adaptive belief propagation decoding is proposed. At each iteration, the soft output values delivered by the adaptive belief propagation algorithm are used as reliability values to perform reduced order reliability-based decoding of the code considered. This approach allows to bridge the gap between the error performance achieved by the lower order reliability-based decoding algorithms which remain sub-optimum, and the maximum likelihood decoding, which is too complex to be implemented for most codes employed in practice. Simulations results for various linear block codes are given and elaborated.
机译:本文提出了一种线性分组码的迭代解码算法,该算法将基于可靠性的解码与自适应置信传播解码相结合。在每次迭代中,将自适应信念传播算法传递的软输出值用作可靠性值,以对所考虑的代码执行基于降阶的基于可靠性的解码。这种方法允许弥合由保持次优状态的基于低阶可靠性的解码算法所实现的错误性能与最大似然解码之间的差距,最大似然解码太复杂而无法在实践中采用大多数代码来实现。给出并阐述了各种线性块码的仿真结果。

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