Qian, M. S., Yan, Xinggang (2020) Integrated fault-tolerant control approach for linear time-delay systems using a dynamic event-triggered mechanism. International Journal of Systems Science, . ISSN 0020-7721. (doi:10.1080/00207721.2020.1817611) (KAR id:83806)
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Official URL: https://doi.org/10.1080/00207721.2020.1817611 |
Abstract
In this study, a novel integrated fault estimation (FE) and fault-tolerant control (FTC) design approach is developed for a system with time-varying delays and additive fault based on a dynamic event-triggered communication mechanism. The traditional static event-triggered mechanism is modified by adding an internal dynamic variable to increase the inter-event interval and decrease the amount of data transmission. Then, a dynamical observer is designed to estimate both the system state and the unknown fault signal simultaneously. A fault estimation-based FTC approach is then given to remove the effects generated by unknown actuator faults, which guarantees that the faulty closed-loop systems are asymptotical stable with a disturbance attenuation level γ. By theory analysis, the Zeno phenomenon is excluded in this study. Finally, a real aircraft engine example is provided to illustrate the feasibility of the proposed integrated FE and FTC method.
Item Type: | Article |
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DOI/Identification number: | 10.1080/00207721.2020.1817611 |
Uncontrolled keywords: | Fault-tolerant control, fault estimation, event-triggered control, H-infinity control |
Subjects: | T Technology |
Divisions: | Divisions > Division of Computing, Engineering and Mathematical Sciences > School of Engineering and Digital Arts |
Depositing User: | Xinggang Yan |
Date Deposited: | 29 Oct 2020 09:44 UTC |
Last Modified: | 05 Nov 2024 12:49 UTC |
Resource URI: | https://kar.kent.ac.uk/id/eprint/83806 (The current URI for this page, for reference purposes) |
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