New group shuffled BP decoding algorithms for LDPC codes

Yu-Liang Chen, Chang-Ming Lee, Y. Su, Chi-Yuan Chang
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引用次数: 6

Abstract

Implementing a belief propagation (BP) based LDPC decoder requires high degrees of parallelism using many component soft-in soft-output (SISO) decoding units to perform message passing from variable nodes to check nodes or vice versa. An obvious complexity-reduction solution is to serialize the decoding process, i.e., dividing a decoding iteration into several serial sub-iterations in which a sub-iteration performs only part of the complete parallel message-passing operation. The group horizontal shuffled BP (GHSBP) and vertical shuffled BP (GVSBP) algorithms respectively partition the check and variable nodes of the code graph into groups to perform group-by-group message-passing decoding. This paper proposes new techniques to improve three key elements of a GHSBP decoding algorithm, namely, the grouping method, the decoding schedule and the log-likelihood updating formulae. The (check nodes) grouping method and decoding schedule optimize certain design criterion. The new normalized min-sum updating formula with a self-adjustable correction (scaling) factor offers better nonlinear approximation. Numerical performance of new GHSBP algorithms that include part or all three new techniques indicate that the combination of the proposed grouping and decoding schedule yields a faster convergence rate and our modified min-sum algorithm gives performance superior to that of the conventional min-sum and normalized min-sum algorithm and is very close to that of the sum-product algorithm.
新组洗牌BP解码算法的LDPC码
实现基于信念传播(BP)的LDPC解码器需要高度并行性,使用许多组件软入软输出(SISO)解码单元来执行从变量节点到检查节点的消息传递,反之亦然。一个明显的降低复杂性的解决方案是序列化解码过程,即,将解码迭代划分为几个串行子迭代,其中子迭代仅执行完整并行消息传递操作的一部分。分组水平洗牌BP (GHSBP)和垂直洗牌BP (GVSBP)算法分别将码图的校验节点和变量节点分组,逐组进行消息传递解码。本文提出了改进GHSBP译码算法的三个关键要素,即分组方法、译码调度和对数似然更新公式。校验节点分组方法和译码调度优化了一定的设计准则。新的归一化最小和更新公式具有自调节校正(缩放)因子,提供了更好的非线性近似。对包含部分或全部三种新技术的新GHSBP算法的数值计算表明,所提出的分组和解码方案的组合收敛速度更快,改进的最小和算法的性能优于传统的最小和算法和归一化最小和算法,并且非常接近和积算法的性能。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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