TY - GEN
T1 - Secure Dynamic Event-Based Consensus for Networked Multi-Agent Systems Subject to Distributed DoS Attacks
AU - Li, Bohan
AU - Gao, Qing
AU - Wang, Zhenqian
AU - Wang, Wei
AU - Lu, Jinhu
N1 - Publisher Copyright:
© 2024 IEEE.
PY - 2024
Y1 - 2024
N2 - This paper addresses the secure leader-following consensus problem in networked multi-agent systems (MASs) subjected to distributed DoS attacks. We propose a robust consensus protocol, leveraging dual-terminal dynamic event-triggering mechanisms (DETMs), to ensure secure consensus in compromised systems. Attackers can launch asynchronous, ape-riodic DoS attacks on different communication channels within the MAS. The validity of a distributed DoS attack is defined by its ability to disrupt the communication topology's connectivity. By implementing two DETMs in each agent, both communication and control update frequencies are reduced, thereby conserving control energy and communication resources. Additionally, we in-troduce a secure hybrid update law to maintain secure consensus under distributed DoS attacks. Theoretical analysis confirms that the proposed protocol guarantees asymptotically stable leader-following consensus, given that the duration and frequency of valid attacks are constrained, and no agent exhibits Zeno behavior. Numerical simulations are provided to demonstrate the effectiveness of the proposed protocol.
AB - This paper addresses the secure leader-following consensus problem in networked multi-agent systems (MASs) subjected to distributed DoS attacks. We propose a robust consensus protocol, leveraging dual-terminal dynamic event-triggering mechanisms (DETMs), to ensure secure consensus in compromised systems. Attackers can launch asynchronous, ape-riodic DoS attacks on different communication channels within the MAS. The validity of a distributed DoS attack is defined by its ability to disrupt the communication topology's connectivity. By implementing two DETMs in each agent, both communication and control update frequencies are reduced, thereby conserving control energy and communication resources. Additionally, we in-troduce a secure hybrid update law to maintain secure consensus under distributed DoS attacks. Theoretical analysis confirms that the proposed protocol guarantees asymptotically stable leader-following consensus, given that the duration and frequency of valid attacks are constrained, and no agent exhibits Zeno behavior. Numerical simulations are provided to demonstrate the effectiveness of the proposed protocol.
KW - Secure cooperation
KW - distributed DoS attack
KW - dynamic event-based control
KW - networked multi-agent system (MAS)
UR - https://www.scopus.com/pages/publications/85216746885
U2 - 10.1109/ICIST63249.2024.10805274
DO - 10.1109/ICIST63249.2024.10805274
M3 - 会议稿件
AN - SCOPUS:85216746885
T3 - 2024 14th International Conference on Information Science and Technology, ICIST 2024
SP - 42
EP - 48
BT - 2024 14th International Conference on Information Science and Technology, ICIST 2024
PB - Institute of Electrical and Electronics Engineers Inc.
T2 - 14th International Conference on Information Science and Technology, ICIST 2024
Y2 - 6 December 2024 through 9 December 2024
ER -