Adaptive Volterra Modeling For Nonlinear Systems Based on LMS Variants

Sachin N. Kapgate, Saurav Gupta, A. Sahoo
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引用次数: 5

Abstract

Many practical systems tend to have some extent of nonlinearity involved in their behavior. System identification and control design for nonlinear dynamical systems is achieving extensive attention in many practical applications. To model nonlinear system behavior, many mathematical models have been developed and employed in practical applications. This paper mainly focuses on application of least mean square (LMS) variants for the adaptive implementation of one such model known as nonlinear Volterra model. The challenging problems involved with the stability and convergence rate of traditional least mean square based approach are shown individually. The supporting analysis and simulations are provided to justify the efficacy of presented work. Least mean square variants based Volterra modeling approaches can be effectively applied in system control design, acoustic echo cancellation and stability analysis of the nonlinear systems.
基于LMS变量的非线性系统自适应Volterra建模
许多实际系统的行为往往具有一定程度的非线性。非线性动力系统的辨识与控制设计在许多实际应用中受到广泛关注。为了模拟非线性系统的行为,人们建立了许多数学模型并在实际应用中使用。本文主要关注最小均方(LMS)变量在非线性Volterra模型的自适应实现中的应用。分别说明了传统的基于最小均方的方法在稳定性和收敛速度方面存在的挑战性问题。提供了支持分析和仿真来证明所提出工作的有效性。基于最小均方变异体的Volterra建模方法可以有效地应用于非线性系统的控制设计、声回波消除和稳定性分析。
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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