Dynamic event‐triggered asynchronous output feedback control for discrete‐time switched systems with deception attacks

Dwell time
DOI: 10.1002/rnc.7590 Publication Date: 2024-08-12T03:46:36Z
ABSTRACT
Abstract This article addresses the problem of dynamic event‐triggered asynchronous output feedback controller design for discrete‐time switched systems under deception attacks. To conserve communication resources and restrict time, a mechanism is established which permits system to switch many times in trigger interval. Then, stability criteria underlying despite impact attacks are obtained via Lyapunov function average dwell time method. Meanwhile, co‐design scheme gains parameters provided. Finally, two simulations used demonstrate effectiveness approach.
SUPPLEMENTAL MATERIAL
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