Fuzzy state-feedback control of uncertain nonlinear MIMO systems

Loubna Merazka, Farouk ZOUARI, A. Boulkroune
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引用次数: 10

Abstract

In this research, we suggest a new fuzzy adaptive state-feedback control strategy for unknown nonlinear multivariable systems for which the input-gains matrix is not necessarily symmetric and is characterized by non-zero leading principle minors. A linearly parameterized fuzzy system is used to appropriately model the uncertainties. When designing our control scheme and studying the stability analysis, a decomposition property of the input-gain matrix is employed. A proportional-integral (PI) adaptation law is suggested to enhance the adaptive parameter convergence. An appropriate Lyapunov function is exploited to study the stability of the corresponding closed-loop control system as well as to derive the adaptation laws. Numerical simulations and a detailed comparison study are given to evaluate the efficiency of our suggested control methodology.
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不确定非线性MIMO系统的模糊状态反馈控制
本文针对输入增益矩阵不一定对称且具有非零前导子原则的未知非线性多变量系统,提出了一种新的模糊自适应状态反馈控制策略。采用线性参数化模糊系统对不确定性进行适当建模。在设计控制方案和研究稳定性分析时,利用了输入增益矩阵的分解特性。为了提高自适应参数的收敛性,提出了一种比例积分自适应律。利用适当的李雅普诺夫函数研究相应闭环控制系统的稳定性,并推导出自适应规律。数值模拟和详细的比较研究给出了评估我们所建议的控制方法的效率。
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