Prescribed-Time Practical Consensus of Nonlinear Multi-Agent Systems Subject to DoS Attacks via Event-Triggered Mechanism
Xuening Xu, Zhiyong Yu, Haijun Jiang, Xuehui Mei
Xinjiang University
内容与影响
This article studies the prescribed-time practical consensus problem for nonlinear multi-agent systems (MASs) subject to denial-of-service (DoS) attacks via an intermittent-based event-triggered mechanism. To this end, we first propose a time-varying scaling function based on the intermittent period, and then use this function to derive a new practical prescribed-time stability theory. Second, this paper further designs an intermittent-based event-triggered control protocol, along with a corresponding triggered function. The main innovation of this protocol is its ability to avoid singular phenomena as time approaches the prescribed instant and to reduce communication costs among all agents. Additionally, some sufficient conditions for achieving leader-following practical consensus are deduced by the proposed prescribed-time stability theory while also excluding Zeno behavior. Finally, two examples are given to verify the effectiveness and feasibility of the theoretical results.
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计算机 / AINetwork Security and Intrusion Detection
Smart Grid Security and Resilience
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