Fuzzy state-feedback control of uncertain nonlinear MIMO systems | IEEE Conference Publication | IEEE Xplore

Fuzzy state-feedback control of uncertain nonlinear MIMO systems


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 nece...Show More

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.
Date of Conference: 07-09 May 2017
Date Added to IEEE Xplore: 26 June 2017
ISBN Information:
Electronic ISSN: 2379-0067
Conference Location: Batna, Algeria
LAJ, University of Jijel, Jijel, Algeria
LARA ENIT, Université de Tunis El Manar, Tunis, Tunisie
LAJ, University of Jijel, Jijel, Algeria

LAJ, University of Jijel, Jijel, Algeria
LARA ENIT, Université de Tunis El Manar, Tunis, Tunisie
LAJ, University of Jijel, Jijel, Algeria
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