Adaptive Event-Triggered Output Feedback Fuzzy Control for Nonlinear Networked Systems With Packet Dropouts and Actuator Failure

  • Zhang, Zhenxing
  • Liang, Hongjing
  • Wu, Chengwei
  • Ahn, Choon Ki
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초록

This paper studies the problem of adaptive event-triggered dynamic output feedback fuzzy control for nonlinear networked control systems. Two crucial factors, packet dropouts and actuator failure, are taken into consideration simultaneously. Takagi-Sugeno fuzzy model is introduced to describe considered systems. The Bernoulli random distribution process is employed to depict the phenomenon of data missing. The actuator failure model is adopted to depict actuator failure. An innovative adaptive event-triggered strategy is built to save computational resource. In the light of Lyapunov stability theory, a fuzzy dynamic output feedback controller is designed to guarantee the stochastic stability and H-infinity performance for considered systems. Finally, simulation results are provided to demonstrate the usefulness of the proposed control strategy.

키워드

Actuator failureadaptive event-triggered mechanismfuzzy dynamic output feedback controlnetworked control systems (NCSs)packet dropoutsDISCRETE-TIME SYSTEMH-INFINITY CONTROLFILTER DESIGNTRACKING CONTROLSTABILIZATION
제목
Adaptive Event-Triggered Output Feedback Fuzzy Control for Nonlinear Networked Systems With Packet Dropouts and Actuator Failure
저자
Zhang, ZhenxingLiang, HongjingWu, ChengweiAhn, Choon Ki
DOI
10.1109/TFUZZ.2019.2891236
발행일
2019-09
유형
Article
저널명
IEEE Transactions on Fuzzy Systems
27
9
페이지
1793 ~ 1806