针对突发信道变化的LMS算法,提出了一种新的权重重置策略

Carlo Tripodi, G. Ferrari, R. Pighi, R. Raheli
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引用次数: 6

摘要

讨论了一种在信道突变时重置最小均方自适应算法权向量的新策略。这种变化可能是由线路阻抗的突然变化引起的,通常是由于切换事件,并且可能显著影响用于自适应回波抵消和均衡的LMS算法的性能。具体来说,它们可能会触发一个收敛暂态期,其持续时间取决于当前权向量与最终权向量之间的距离。在以前的工作中,基于符号反转的权重重置策略在电力线调制解调器回波消除的背景下进行了演示。在本文中,我们通过研究基于一组重新初始化向量的权重重置策略来扩展这项工作,其中一些可能接近最终的LMS最优权重。结果表明,快速检测信道突变并适当重置LMS权重以缩短诱导瞬态时间是可能的。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
A novel weight reset strategy for the LMS algorithm subject to abrupt channel variations
We discuss a novel strategy to reset the weight vector of the Least Mean Square (LMS) adaptive algorithm when abrupt channel variations occur. Such variations may be caused by line impedance sudden changes, typically due to switching events, and may significantly impact the performance of the LMS algorithms used for adaptive echo cancellation and equalization. Specifically, they may trigger a convergence transient period, whose duration depends on the distance between the current weight vector and the final one. In previous work, a weight reset strategy based on sign inversion was demonstrated in the context of echo cancellation for a power line modem. In this paper, we extend this work by investigating weight reset strategies based on a group of reinitialization vectors, some of which will be likely close to the final LMS optimal weights. The results show that it may indeed be possible to promptly detect abrupt channel variations and properly reset the LMS weights in order to shorten the induced transient period.
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