On adaptive observers design for a class of uniformly observable systems

M. Farza, I. Bouraoui, T. Ménard, R. Ben Abdennour, M. M'Saad
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引用次数: 3

Abstract

In this paper, one aims at addressing the adaptive observer design for a class of multivariable nonlinear systems with Lipschitz nonlinearities. Two adaptive observers have been derived using two different approaches issued from an overview of the available adaptive observer design literature. The first one is a natural extension of a recently proposed adaptive observer for single output systems, while the second one has been derived bearing in mind the fact that an adaptive observer can be derived using a high gain state observer design approach based on an augmented system model accounting for the unknown parameter dynamics. Both observers are shown to be equivalent in the sens that they are governed by the same equations and the underlying exponential convergences of state observation and parameter estimation errors are insured under the the same persistent excitation condition.
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一类均匀可观测系统的自适应观测器设计
本文研究一类具有Lipschitz非线性的多变量非线性系统的自适应观测器设计问题。从现有的自适应观察器设计文献的概述中,使用两种不同的方法推导出了两个自适应观察器。第一个是最近提出的单输出系统自适应观测器的自然扩展,而第二个是考虑到自适应观测器可以使用基于考虑未知参数动力学的增广系统模型的高增益状态观测器设计方法来推导的。两个观测器被证明是等价的,因为它们由相同的方程控制,并且在相同的持续激励条件下,状态观测和参数估计误差的潜在指数收敛得到了保证。
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