Steady-state performance analysis of the LMS adaptive time-varying second order Volterra filter

M. Sayadi, F. Fnaiech, S. Guillon, M. Najim
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引用次数: 2

Abstract

In this paper, the steady-state performance of the Least Mean Square (LMS) adaptive second order Volterra filter, with constant step-sizeμ, in a time-varying setting, is analysed. The quantitative evaluation of the steady-state Excess Mean Square Error (EMSE), where the contribution of the gradient misadjustment and the tracking error are well characterized, is established. The optimum step-size for time-varying second order Volterra filter is then given. Thus, we can study the correlation between the Excess MSE and the optimum step-size in one hand and the parameters of the time-varying nonlinear system, in the other hand. Furthermore, the steady-state behavior predicted by the analysis is in good agreement with the experimental results. The adaptive filter was used in a second order Volterra system identification in a non stationary environment.
LMS自适应时变二阶Volterra滤波器的稳态性能分析
本文分析了定步长μ的最小均方自适应二阶Volterra滤波器在时变条件下的稳态性能。建立了稳态超均方误差(EMSE)的定量评价,其中梯度失调和跟踪误差的贡献得到了很好的表征。给出了时变二阶Volterra滤波器的最优步长。因此,我们一方面可以研究过剩均方差与最优步长之间的关系,另一方面也可以研究时变非线性系统参数之间的关系。此外,分析预测的稳态行为与实验结果吻合较好。将自适应滤波器应用于非平稳环境下的二阶Volterra系统辨识。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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