Disturbance rejection for multi-weighted complex dynamical networks with actuator saturation and deception attacks via hybrid-triggered mechanism

  • Sakthivel, R.; 
  • Kwon, O. M.; 
  • Park, M. J.; 
  • Lee, S. M.
Citations

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SCOPUS

19

초록

In this work, we address hybrid-driven-based robust synchronization problem for multi-weighted com-plex dynamical networks with actuator saturation and deception attacks. The hybrid-triggered mecha-nism, which combines a switch between the event-triggered scheme and the time-triggered scheme, is often used to reduce the data transmission and the alleviate network burden. Further, the equivalent -input-disturbance technique is applied to eliminate the unknown disturbance effect of the addressed system. Moreover, a memory controller is designed under actuator saturation to ensure that the resultant augmented system is asymptotically synchronized even in the presence of deception attacks. Finally, three numerical examples are given to show the validity of the obtained theoretical results.(c) 2023 Elsevier Ltd. All rights reserved.

키워드

Complex dynamical networks; Equivalent-input-disturbance; Multi-weights; Actuator saturation; Deception attacks; TIME-VARYING DELAY; SWITCHED SYSTEMS; FINITE-TIME; SYNCHRONIZATION; SUBJECT; DESIGN; MEMORY; COMMUNICATION
제목
Disturbance rejection for multi-weighted complex dynamical networks with actuator saturation and deception attacks via hybrid-triggered mechanism
저자
Sakthivel, R.; Kwon, O. M.; Park, M. J.; Lee, S. M.
DOI
10.1016/j.neunet.2023.02.031
발행일
2023-05
유형
Article
저널명
Neural Networks
권
162
페이지
225 ~ 239