Event-triggered control design with varying gains for polynomial fuzzy systems against DoS attacks

  • Selvaraj, P.; 
  • Kwon, O. M.; 
  • Lee, S. H.; 
  • Sakthivel, R.; 
  • Lee, S. M.
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초록

This paper presents an innovative event-triggered control scheme for addressing the stabilization problem of polynomial fuzzy systems under the influence of Denial-of-Service (DoS) attacks. The proposed controller utilizes a sampling-based event-triggered mechanism to reduce communi-cation resources and avoid Zeno behavior. Furthermore, a novel polynomial fuzzy model-based control system is developed to investigate the impact of periodic DoS attacks and the addressed event-triggered mechanism on system stability. To improve system performance, control gains are updated at each triggering instant. The exponential stability criteria are formulated in the form of sum-of-square constraints, supported by a triggering instant dependent piecewise Lyapunov-Krasovskii functional and an online asynchronous premise reconstruction approach. Finally, the efficiency and usefulness of the theoretical findings are validated through simulation examples.

키워드

Polynomial fuzzy systems; Event-triggered controller; Denial-of-Service attack; STABILITY ANALYSIS; TRACKING CONTROL; MODELS
제목
Event-triggered control design with varying gains for polynomial fuzzy systems against DoS attacks
저자
Selvaraj, P.; Kwon, O. M.; Lee, S. H.; Sakthivel, R.; Lee, S. M.
DOI
10.1016/j.matcom.2023.11.022
발행일
2024-04
유형
Article
저널명
Mathematics and Computers in Simulation
권
218
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1 ~ 14