This paper presents a novel scheme for the detection and isolation of faults affecting the sensors measuring the satellite attitude, body angular velocity and flywheel spin rates as well as defects related to the control torques provided by satellite momentum wheels. Thanks to the jointly use of the singular perturbations theory and nonlinear geometric approach, a novel fault detection and isolation system has been developed to accurately detect and isolate faults occurring on all the considered actuators and sensors. Simulation results are based on a detailed nonlinear satellite model with embedded disturbance description. The results document the effectiveness of the proposed fault detection and isolation scheme.

Baldi, P., Castaldi, P., Mimmo, N., Simani, S. (2017). Combined Singular Perturbations and Nonlinear Geometric Approach to FDI in Satellite Actuators and Sensors. Elsevier B.V. [10.1016/j.ifacol.2017.08.1375].

Combined Singular Perturbations and Nonlinear Geometric Approach to FDI in Satellite Actuators and Sensors

Castaldi, P.
Investigation
;
Mimmo, N.
Validation
;
2017

Abstract

This paper presents a novel scheme for the detection and isolation of faults affecting the sensors measuring the satellite attitude, body angular velocity and flywheel spin rates as well as defects related to the control torques provided by satellite momentum wheels. Thanks to the jointly use of the singular perturbations theory and nonlinear geometric approach, a novel fault detection and isolation system has been developed to accurately detect and isolate faults occurring on all the considered actuators and sensors. Simulation results are based on a detailed nonlinear satellite model with embedded disturbance description. The results document the effectiveness of the proposed fault detection and isolation scheme.
2017
Proceedings of the 20th World Congress of the International Federation of Automatic Control - IFAC 2017
7253
7259
Baldi, P., Castaldi, P., Mimmo, N., Simani, S. (2017). Combined Singular Perturbations and Nonlinear Geometric Approach to FDI in Satellite Actuators and Sensors. Elsevier B.V. [10.1016/j.ifacol.2017.08.1375].
Baldi, P.; Castaldi, Paolo; Mimmo, Nicola; Simani, S.
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11585/611969
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