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Theoretical discussion of the filtered-X LMS algorithm based on statistical mechanical analysis

机译:基于统计力学分析的Filtered-X LMS算法的理论探讨

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We theoretically obtain the learning curves of the FXLMS algorithm on the basis of statistical mechanical analysis. Cosines of angles between the coefficient vectors of an adaptive filter, its shifted filters, and an unknown system are treated as macroscopic variables. Assuming that the tapped-delay line is sufficiently long and exactly calculating the correlations between the past tap input vectors and the coefficient vector of the adaptive filter, we obtain simultaneous differential equations that describe the dynamical behaviors of the macroscopic variables in a deterministic form. We analytically solve the equations and show that the obtained theory quantitatively agrees with computer simulations. In the analysis, neither the independence assumption, the small step-size condition, nor the few-taps assumption is used.
机译:我们在统计力学分析的基础上理论上获得了FXLMS算法的学习曲线。自适应滤波器,其位移滤波器和未知系统的系数矢量之间的角度余弦被视为宏观变量。假设抽头延迟线足够长,并且精确计算了过去抽头输入向量和自适应滤波器系数向量之间的相关性,我们将获得联立微分方程,以确定性形式描述宏观变量的动力学行为。我们对方程进行了解析求解,结果表明,所获得的理论与计算机模拟在数量上是一致的。在分析中,既不使用独立性假设,也不使用小步长条件,也不使用少抽头假设。

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