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An affine combination of two LMS adaptive filters - Transient mean-square analysis

机译:两个LMS自适应滤波器的仿射组合-瞬态均方分析

摘要

This paper studies the statistical behavior of an affine combination of the outputs of two LMS adaptive filters that simultaneously adapt using the same white Gaussian inputs. The purpose of the combination is to obtain an LMS adaptive filter with fast convergence and small steady-state mean-square deviation (MSD). The linear combination studied is a generalization of the convex combination, in which theudcombination factor $lambda(n)$ is restricted to the interval $(0,1)$. The viewpoint is taken that each of the two filters produces dependent estimates of the unknown channel. Thus, there exists a sequence of optimal affine combining coefficients which minimizes the MSE. First, the optimal unrealizable affine combiner is studied and provides the best possible performance for this class. Then two new schemes are proposed for practical applications. The mean-square performances are analyzed and validated by MonteudCarlo simulations. With proper design, the two practical schemes yield an overall MSD that is usually less than the MSD's of either filter.
机译:本文研究了两个LMS自适应滤波器输出的仿射组合的统计行为,这些滤波器同时使用相同的白色高斯输入进行自适应。结合的目的是获得具有快速收敛性和较小的稳态均方差(MSD)的LMS自适应滤波器。所研究的线性组合是凸组合的推广,其中 udcombining factor $ lambda(n)$被限制在区间$(0,1)$中。认为两个滤波器中的每一个都会产生未知信道的相关估计。因此,存在使MSE最小化的最佳仿射组合系数的序列。首先,研究了最佳的无法实现的仿射合并器,并为此类提供了最佳的性能。然后针对实际应用提出了两种新方案。均方性能通过Monte udCarlo仿真进行分析和验证。通过适当的设计,这两种实用方案产生的总体MSD通常小于任一滤波器的MSD。

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