Secure Control for T-S Fuzzy Wind Turbine Systems Under Hybrid Cyberattacks via an Adaptive Memory Event-Triggered Mechanism

Citations

WEB OF SCIENCE

11
Citations

SCOPUS

15

초록

This article addresses the secure control problem for the Takagi-Sugeno (T-S) fuzzy wind turbine system (WTS) subject to hybrid cyberattacks. To reduce system performance loss and redundant data transmission under such attacks, a novel adaptive memory event-triggered mechanism (ETM) is proposed, offering two key advantages. First, unlike traditional ETMs that rely solely on current system information, the adaptive memory ETM utilizes historical release data to adjust communication frequency and enhance control effectiveness. Second, an attack-related triggering condition and adaptive law are introduced to reduce the abnormaldata transmission induced by denial of service (DoS) attacks and extend the lifespan of the sensor node. Sufficient conditions are derived to ensure the mean-square H-infinity asymptotic stability of the resulting T-S fuzzy WTS, while also guaranteeing uniformly ultimate boundedness in the presence of DoS attacks. Finally, an illustrative example is used to show the effectiveness of the proposed method.

키워드

Adaptive memory event-triggered mechanism (AMETM); hybrid cyberattacks; secure control; wind turbine system (WTS); MULTIAGENT SYSTEMS
제목
Secure Control for T-S Fuzzy Wind Turbine Systems Under Hybrid Cyberattacks via an Adaptive Memory Event-Triggered Mechanism
저자
Xu, Dong; Liu, Yajuan; Lee, Sangmoon
DOI
10.1109/TFUZZ.2025.3525778
발행일
2025-05
유형
Article
저널명
IEEE Transactions on Fuzzy Systems
권
33
호
5
페이지
1475 ~ 1487