Predefined-Time Zero-Error Tracking in Cyber-Physical Systems Under DoS Attacks via Event-Triggered Approach

Citations

WEB OF SCIENCE

1
Citations

SCOPUS

1

초록

Most existing control strategies for nonlinear systems under denial-of-service (DoS) attacks require prior knowledge of the attack frequency and duration and typically achieve only bounded or asymptotic convergence. In this article, an adaptive predefined-time (PT) event-triggered (ET) security control scheme is developed for a class of nonlinear strict-feedback cyber-physical systems (CPSs) subject to DoS attacks. By designing an adaptive high-gain filter, the discontinuous and unmeasurable states caused by DoS attacks are estimated in a smooth and differentiable manner within a PT. Building on this estimation, the proposed control strategy ensures not only the ultimate boundedness of all closed-loop signals but also guarantees that the tracking error converges to zero within a PT, even when the frequency and duration of DoS attacks are unknown. The key advantages of the proposed approach lie in its broader applicability and improved control performance while concurrently conserving communication resources. Finally, numerical simulations are provided to demonstrate the efficacy of the proposed method.

키워드

Cyber-physical systems (CPSs)denial-of-service (DoS) attacksdynamic event triggeringpredefined-time (PT) controlSTABILIZATIONSECURITY
제목
Predefined-Time Zero-Error Tracking in Cyber-Physical Systems Under DoS Attacks via Event-Triggered Approach
저자
Hua, ZhiweiXu, ShengyuanAhn, Choon Ki
DOI
10.1109/JIOT.2026.3660725
발행일
2026-04-15
유형
Article
저널명
IEEE Internet of Things Journal
13
8
페이지
16804 ~ 16814