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Secure Cooperative Event-Triggered Control of Linear Multiagent Systems Under DoS Attacks

机译:在DOS攻击下安全的合作事件触发控制线性多轴系统

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摘要

This paper studies secure cooperative event-triggered control of linear multiagent systems under denial-of-service (DoS) attacks. The DoS attacks refer to interruptions of communication channels carried out by an intelligent adversary. We consider a class of time-sequence-based DoS attacks allowed to occur aperiodically. Then, an explicit analysis of the frequency and duration of DoS attacks is investigated for both secure leaderless and leader-following consensus problems. A resilient cooperative event-triggered control scheme is developed and scheduling of controller updating times is determined in the presence of DoS attacks. It is shown that based on the proposed distributed algorithms, all the agents can achieve secure consensus exponentially. The effectiveness of the developed methods is illustrated through three case studies: 1) multiple robot coordination; 2) distributed voltage regulation of power networks; and 3) distributed cooperative control of unstable dynamic systems.
机译:本文研究了拒绝服务(DOS)攻击下的线性多轴系统的安全协同事件触发控制。 DOS攻击是指由智能对手执行的通信渠道的中断。我们考虑一类基于时间序列的DOS攻击,允许非社交地发生。然后,针对安全无联系和领导者遵循共识问题,研究了对DOS攻击频率和持续时间的明确分析。开发了一种弹性协作事件触发的控制方案,并在存在DOS攻击时确定控制器更新时间的调度。结果表明,基于所提出的分布式算法,所有代理商可以指数达到安全的共识。通过三种案例研究说明了开发方法的有效性:1)多个机器人协调; 2)电网的分布电压调节; 3)分布式动态系统的合作控制。

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