Adaptively Adjusted Event-Triggering Mechanism on Fault Detection for Networked Control Systems

This paper studies the problem of adaptively adjusted event-triggering mechanism-based fault detection for a class of discrete-time networked control system (NCS) with applications to aircraft dynamics. By taking into account the fault occurrence detection progress and the fault occurrence probabili...

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Veröffentlicht in:IEEE transactions on cybernetics 2017-08, Vol.47 (8), p.2299-2311
Hauptverfasser: Wang, Yu-Long, Lim, Cheng-Chew, Shi, Peng
Format: Artikel
Sprache:eng
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Zusammenfassung:This paper studies the problem of adaptively adjusted event-triggering mechanism-based fault detection for a class of discrete-time networked control system (NCS) with applications to aircraft dynamics. By taking into account the fault occurrence detection progress and the fault occurrence probability, and introducing an adaptively adjusted event-triggering parameter, a novel event-triggering mechanism is proposed to achieve the efficient utilization of the communication network bandwidth. Both the sensor-to-control station and the control station-to-actuator network-induced delays are taken into account. The event-triggered sensor and the event-triggered control station are utilized simultaneously to establish new network-based closed-loop models for the NCS subject to faults. Based on the established models, the event-triggered simultaneous design of fault detection filter (FDF) and controller is presented. A new algorithm for handling the adaptively adjusted event-triggering parameter is proposed. Performance analysis verifies the effectiveness of the adaptively adjusted event-triggering mechanism, and the simultaneous design of FDF and controller.
ISSN:2168-2267
2168-2275
DOI:10.1109/TCYB.2016.2631903