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.
Author supplied keywords
Cite
CITATION STYLE
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
Register to see more suggestions
Mendeley helps you to discover research relevant for your work.