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A theory of the FXLMS algorithm based on statistical-mechanical method

机译:基于统计力学方法的FXLMS算法原理

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We analyze the learning curves of the FXLMS algorithm using a statistical-mechanical method. Cross-correlations between the element of a primary path and that of an adaptive filter and autocorrelations of the elements of the adaptive filter are treated as macroscopic variables. We obtain simultaneous differential equations that describe the dynamical behaviors of the macroscopic variables under the conditions in which the tapped-delay line is long. We analytically solve the equations to obtain the correlations and finally compute the mean-square error. Introducing the correlation function of the input signal, the theory can treat not only the white but also the nonwhite signal. The obtained theory quantitatively agrees with the results of computer simulations.
机译:我们使用统计-机械方法分析了FXLMS算法的学习曲线。主路径的元素与自适应滤波器的元素之间的互相关与自适应滤波器的元素的自相关被视为宏观变量。我们获得联立的微分方程,这些微分方程描述了在抽头延迟线较长的情况下宏观变量的动力学行为。我们通过分析求解方程来获得相关性,最后计算均方误差。引入输入信号的相关函数,该理论不仅可以处理白色信号,还可以处理非白色信号。所获得的理论在数量上与计算机仿真的结果一致。

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