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Anti-windup strategies for discrete-time switched systems subject to input saturation
Authors:Marc Jungers  Sophie Tarbouriech
Affiliation:1. Université de Lorraine, CRAN, UMR 7039, 2 avenue de la forêt de Haye, Vand?uvre-lès-Nancy Cedex, 54516, France;2. CNRS, CRAN, UMR 7039, Francemarc.jungers@univ-lorraine.fr;4. CNRS, LAAS, 7 avenue du Colonel Roche, F-31400 Toulouse, France;5. Univ de Toulouse, LAAS, F-31400 Toulouse, France
Abstract:This paper deals with the design of anti-windup compensator for discrete-time switched systems subject to input saturation. The cases of static and dynamic anti-windup controllers are addressed aiming at maximising the estimate of the basin of attraction of the origin for the closed-loop system. Two aspects of the switching law are taken into account during the design: either it is arbitrary or it is a part of the complete control law. Theoretical conditions allowing to synthesise the anti-windup compensator are mainly described through linear matrix inequalities. Computational oriented conditions are then provided to solve convex optimisation problems that are able to give a constructive solution.
Keywords:Switched systems  anti-windup  Lyapunov functions  saturation  deadzone  Lyapunov–(Metzler) inequalities
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