Hybrid-driven-based resilient control for networked T-S fuzzy systems with time-delay and cyber-attacks

  • Saravanakumar, T.; 
  • Lee, Tae H.
Citations

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22
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SCOPUS

21

초록

This work investigates design problem of the hybrid-triggered-based resilient controller for a class of Takagi-Sugeno (T-S) fuzzy systems subject to nondeterministic cyber-attacks, probabilistic time-delay, controller gain variations and actuator failures in which nondeterministic cyber-attacks and hybrid-triggered mechanism are implemented by probabilistic variables gratifying the Bernoulli distributions. To save the network resources, a new kind of hybrid-triggered-based resilient controller design is introduced. By employing Lyapunov technique together with improved Wirtinger's integral inequalities and event-generator function, new delay-dependent sufficient conditions are constructed which assures that the resulting closed-loop system is mean square asymptotically stable and satisfies a prescribed performance. At last, two numerical examples are provided to display the effectiveness and advantage of the constructed method.

키워드

hybrid-triggered scheme; networked control systems; nondeterministic cyber-attacks; resilient control design; T-S fuzzy systems; INFINITY FILTER DESIGN; FAULT-TOLERANT CONTROL; STABILITY CONDITIONS; TRIGGERED CONTROL; SUBJECT
제목
Hybrid-driven-based resilient control for networked T-S fuzzy systems with time-delay and cyber-attacks
저자
Saravanakumar, T.; Lee, Tae H.
DOI
10.1002/rnc.6801
발행일
2023-09-10
유형
Article
저널명
International Journal of Robust and Nonlinear Control
권
33
호
13
페이지
7869 ~ 7891