Fault Tolerant Control Design For Polytopic LPV Systems

Author:

Rodrigues Mickael,Theilliol Didier,Aberkane Samir,Sauter Dominique

Abstract

Fault Tolerant Control Design For Polytopic LPV SystemsThis paper deals with a Fault Tolerant Control (FTC) strategy for polytopic Linear Parameter Varying (LPV) systems. The main contribution consists in the design of a Static Output Feedback (SOF) dedicated to such systems in the presence of multiple actuator faults/failures. The controllers are synthesized through Linear Matrix Inequalities (LMIs) in both fault-free and faulty cases in order to preserve the system closed-loop stability. Hence, this paper provides a new sufficient (but not necessary) condition for the solvability of the stabilizing output feedback control problem. An example illustrates the effectiveness and performances of the proposed FTC method.

Publisher

Walter de Gruyter GmbH

Subject

Applied Mathematics,Engineering (miscellaneous),Computer Science (miscellaneous)

Reference30 articles.

1. Angelis G. Z. (2001): System Analysis, Modelling and Control with Polytopic Linear Models. — Ph.D. thesis, University of Eindhoven, the Netherlands.

2. Diagnosis and Fault-Tolerant Control

3. H control of LPV systems with dynamic output feedback;M. Bouazizi,2001

4. Predictive control of constrained nonlinear systems via LPV linear embeddings;A. Casavola;Int. J. Robust Nonlin. Contr.,2003

5. An LMI formulation for output feedback stabilization in multiple model approach;M. Chadli,2002

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