Resilient Fully Distributed Event‐Triggered Consensus Against DSS Attacks in Nonlinear MAS via Fractional‐Order Super‐Twisting Sliding Mode Control
Long Sheng, Lihao Liu, Yuanyuan Xu, Tieshan Li, Yifan BaiABSTRACT
This paper proposes a fully distributed event‐triggered control strategy for nonlinear multi‐agent systems (MASs) that is resilient to distributed sequential scaling (DSS) attacks. A key innovation is the integration of fractional‐order super‐twisting sliding mode control (FOSTSMC). This approach significantly reduces the communication load via an event‐triggered mechanism and operates without needing global information. The FOSTSMC enhances control precision and effectively mitigates the chattering problem typical of conventional sliding mode control. A generic DSS attack model is analyzed, and the consensus problem under such attacks is investigated. The proposed FOSTSMC‐based protocol is shown to achieve asymptotic consensus resilient to these attacks. Lyapunov stability theory rigorously proves the system's asymptotic stability and excludes Zeno behavior. Comparative simulations under various multi‐channel attacks confirm the framework's efficacy and superiority, demonstrating that asymptotic stability is maintained while communication resources are conserved.