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Output Feedback NCS of DoS Attacks Triggered by Double-Ended Events
Author(s) -
Xinzhi Feng,
Yang Yang,
Xiaozhong Qi,
Chunming Xu,
Ze Ji
Publication year - 2021
Publication title -
security and communication networks
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 0.446
H-Index - 43
eISSN - 1939-0114
pISSN - 1939-0122
DOI - 10.1155/2021/6643034
Subject(s) - denial of service attack , computer science , event (particle physics) , computer security , control (management) , controller (irrigation) , stability (learning theory) , computer network , artificial intelligence , physics , the internet , quantum mechanics , machine learning , world wide web , agronomy , biology
In recent years, the research of the network control system under the event triggering mechanism subjected to network attacks has attracted foreign and domestic scholars’ wide attention. Among all kinds of network attacks, denial-of-service (DoS) attack is considered the most likely to impact the performance of NCS significantly. +e existing results on event triggering do not assess the occurrence of DoS attacks and controller changes, which will reduce the control performance of the addressed system. Aiming at the network control system attacked by DoS, this paper combines double-ended elastic event trigger control, DoS attack, and quantitative feedback control to study the stability of NCS with quantitative feedback of DoS attack triggered by a double-ended elastic event. Simulation examples show that this method can meet the requirements of control performance and counteract the known periodic DoS attacks, which save limited resources and improve the system’s antijamming ability.

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