We consider robust linear static anti-windup design for linear control systems subject to input saturation with uncertain parameters. Within this context, we use scenario-based randomized techniques and revisit the well known LMI-based static anti-windup design technique for continuous-time linear control systems. The proposed approach leads to convex (LMI-based) techniques to construct a randomized robust nonlinear L2 gain estimate and to design an optimal robust static linear anti-windup compensator. The advantages of the proposed technique are illustrated on a simulation example.

Randomized analysis and synthesis of robust linear static anti-windup

Zaccarian, Luca;
2013-01-01

Abstract

We consider robust linear static anti-windup design for linear control systems subject to input saturation with uncertain parameters. Within this context, we use scenario-based randomized techniques and revisit the well known LMI-based static anti-windup design technique for continuous-time linear control systems. The proposed approach leads to convex (LMI-based) techniques to construct a randomized robust nonlinear L2 gain estimate and to design an optimal robust static linear anti-windup compensator. The advantages of the proposed technique are illustrated on a simulation example.
2013
52nd IEEE Conference on Decision and Control
Italia
IEEE-CSS
9781467357142
9781467357173
9781479913817
Simone, Formentin; Sergio M., Savaresi; Zaccarian, Luca; Fabrizio, Dabbene
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11572/68045
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