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Interval observer-based methodology for passive fault tolerant control of linear parameter-varying systems

Abstract : The paper deals with passive fault tolerant control for linear parameter varying systems subject to component faults. Under the assumption that the faults magnitudes are considered unknown but bounded, a novel methodology is proposed using interval observer with an [Formula: see text] formalism to attenuate the effects of the uncertainties and to improve the accuracy of the proposed observer. The necessary and sufficient conditions of the control system stability are developed in terms of matrix inequalities constraints using Lyapunov stability theory. Based on a linear state feedback, a fault tolerant control strategy is designed to handle component faults effect as well as external disturbances and preserve the system closed-loop stability for both fault-free and component faulty cases. Two simulation examples are presented to demonstrate the effectiveness of the proposed method.
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https://hal.archives-ouvertes.fr/hal-03357304
Contributor : Tarek Raïssi Connect in order to contact the contributor
Submitted on : Tuesday, September 28, 2021 - 5:31:32 PM
Last modification on : Wednesday, September 28, 2022 - 5:53:26 AM

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Rihab Lamouchi, Tarek Raissi, Messaoud Amairi, Mohamed Aoun. Interval observer-based methodology for passive fault tolerant control of linear parameter-varying systems. Transactions of the Institute of Measurement and Control, SAGE Publications, In press, pp.014233122110403. ⟨10.1177/01423312211040370⟩. ⟨hal-03357304⟩

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