Integration of invariant-set-based FDI with varying sampling rate virtual actuator and controller

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Abstract

We present a new output feedback fault-tolerant control strategy for continuous-time linear systems with bounded disturbances. The strategy combines a digital nominal controller under controller-driven (varying) sampling with virtual actuator (VA)-based controller reconfiguration to compensate for abrupt actuator faults and invariant-set-based fault detection and isolation. Two independent objectives are considered: (a) closed-loop stability with setpoint tracking and (b) controller reconfiguration under faults. Our main contribution is to extend an existing fault detection and isolation and VA-based controller reconfiguration strategy to systems under controller-driven sampling in such a way that if objective (a) is possible under controller-driven sampling (without VA) and objective (b) is possible under uniform sampling (without controller-driven sampling), then closed-loop stability and setpoint tracking will be preserved under both healthy and faulty operations for any possible sampling rate evolution that may be selected by the controller.

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Osella, E. N., Haimovich, H., & Seron, M. M. (2016). Integration of invariant-set-based FDI with varying sampling rate virtual actuator and controller. International Journal of Adaptive Control and Signal Processing, 30(2), 393–411. https://doi.org/10.1002/acs.2551

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