A Passivity-Based Self-Triggered Strategy For Cyber Physical Systems Under Denial-Of-Service Attack

2017 IEEE 56TH ANNUAL CONFERENCE ON DECISION AND CONTROL (CDC)(2017)

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摘要
Networked control systems are vulnerable to adversarial attacks, such as Denial-of-Service (DoS) attacks, which intend to jam control channels and hence degrade system performance. In this paper, we design a passivity-based mechanism that preserves the security level and control performance under time-varying delays and control packets dropouts. We develop a switching controller framework over an imperfect network and present a class of self-triggered feedback control laws to mitigate DoS attacks with local information. By deducing the maximal tolerant period of each attack, the QSR-dissipativity and hence L-2 stability is preserved under the proposed triggering conditions.
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关键词
security level,time-varying delays,control packets dropouts,switching controller framework,self-triggered feedback control laws,DoS attacks,L2 stability,Denial-of-Service attacks,adversarial attacks,networked control systems,denial-of-service attack,cyber physical systems,passivity,triggering conditions
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