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Adaptive state allocation algorithm in MLSD receiver for multipath fading channels: structure and strategy

机译:MLSD接收机中多径衰落信道的自适应状态分配算法:结构和策略

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摘要

This paper presents the adaptive state allocation (ASA) algorithm, a new scheme based on maximum likelihood sequence detection (MLSD) of signals transmitted over Rayleigh fading channels. Although MLSD is an optimal scheme, its computational complexity limits many applications. The ASA algorithm is a detection method whose performance is close to that of MLSD, but with greatly reduced computational complexity. Adaptive state partitioning in the trellis diagram is used in this algorithm by measuring the short-term received signal power. Also, an adaptive threshold for selecting only a few states of the trellis is employed in this algorithm based on the Chernoff distance between the probability density functions (PDFs) of correct and incorrect branch metrics. The ASA-DF, a special case of ASA using decision feedback, shows a very good tradeoff between the performance and computational complexity for selective fading channels. Using ASA with diversity reception not only improves the performance, but also decreases the computational complexity in comparison with the computational complexity of using MLSD with diversity reception.
机译:本文提出了自适应状态分配(ASA)算法,这是一种基于最大似然序列检测(MLSD)的瑞利衰落信道上传输的信号的新方案。尽管MLSD是最佳方案,但其计算复杂性限制了许多应用程序。 ASA算法是一种性能接近MLSD的检测方法,但是计算复杂度大大降低。通过测量短期接收信号功率,在该算法中使用网格图中的自适应状态分区。而且,在该算法中,基于正确和错误分支度量的概率密度函数(PDF)之间的Chernoff距离,采用了仅选择网格状态的自适应阈值。 ASA-DF是使用决策反馈的ASA的特例,在选择性衰落信道的性能和计算复杂度之间显示出很好的折衷。与使用带分集接收的MLSD的计算复杂度相比,使用具有分集接收的ASA不仅可以提高性能,而且可以降低计算复杂度。

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