In this paper we propose an innovative way of dealing with the design of fault-tolerant control systems. We show how the nonlinear output regulation theory can be successfully adopted in order to design a regulator able to offset the effect of all possible faults which can occur and, in doing so, also to detect and isolate the occurred fault. The regulator is designed by embedding the (possible nonlinear) internal model of the fault. This idea is applied to the design of a fault-tolerant controller for induction motors in presence of both rotor and stator mechanical faults.

Implicit fault tolerant control: application to induction motors / Bonivento, C.; Isidori, Alberto; Marconi, L.; Paoli, A.. - In: AUTOMATICA. - ISSN 0005-1098. - 40:(2004), pp. 355-371. [10.1016/j.automatica.2003.10.003]

Implicit fault tolerant control: application to induction motors.

ISIDORI, Alberto;
2004

Abstract

In this paper we propose an innovative way of dealing with the design of fault-tolerant control systems. We show how the nonlinear output regulation theory can be successfully adopted in order to design a regulator able to offset the effect of all possible faults which can occur and, in doing so, also to detect and isolate the occurred fault. The regulator is designed by embedding the (possible nonlinear) internal model of the fault. This idea is applied to the design of a fault-tolerant controller for induction motors in presence of both rotor and stator mechanical faults.
2004
01 Pubblicazione su rivista::01a Articolo in rivista
Implicit fault tolerant control: application to induction motors / Bonivento, C.; Isidori, Alberto; Marconi, L.; Paoli, A.. - In: AUTOMATICA. - ISSN 0005-1098. - 40:(2004), pp. 355-371. [10.1016/j.automatica.2003.10.003]
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11573/5287
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