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This paper investigates the attack detection and secure consensus problem of multi-agent systems under distributed replay attacks. Attacks on the communication links between agents can result in performance degradation and inability to achieve consensus. To address this challenge, first, a novel distributed replay attack model is proposed, in which duration and frequency constraints are imposed on the attack. Unlike traditional models, this proposed model accounts for a more complex and practical scenario where the adversary launches independent attacks on each communication channel, and the attack topology pattern is time-varying. Second, a detection scheme based on moving target defence and dynamic encryption-decryption is proposed to address the challenge of undetected attacks in specific scenarios. This scheme ensures a high detection probability without compromising system performance. Then, a fully distributed attack-detection-based secure controller is designed to mitigate the impacts of attacks and ensure secure consensus. The relationship between attack duration and system stability under different attack patterns is investigated, and a sufficient condition for attack duration that allows the system to reach consensus is derived. Finally, the effectiveness of the proposed method is verified through simulation experiments.
Yang et al. (Tue,) studied this question.
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