Fault-Tolerant Consensus of Single-Integrator Multi-Agent Systems under Synchronous Self-Sensing Function Failure

Zhihai Wu, Linbo Xie
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Abstract

This paper investigates fault-tolerant consensus of single-integrator multi-agent systems (MASs) with partial agents subject to synchronous self-sensing function failure (SSFF). First, a strategy of recovering the connectivity of network topology among normal agents is proposed via multi-hop communication together with agents subject to SSFF as routing nodes. Second, a fault-tolerant consensus protocol with time-varying gains is designed. Then, consensus convergence is analyzed by separately investigating the dynamics of normal agents and agents subject to SSFF. It is proved that under proper time-varying gains, single-integrator MASs using the proposed strategy of recovering the connectivity of network topology and fault-tolerant consensus protocol can achieve consensus. Finally, numerical simulations are provided to illustrate the effectiveness of the theoretical results.
同步自感知功能失效下单集成商多智能体系统容错一致性
研究了部分智能体存在同步自感知功能失效的单积分器多智能体系统的容错一致性问题。首先,提出了一种以受SSFF约束的agent作为路由节点,通过多跳通信恢复正常agent之间网络拓扑连通性的策略。其次,设计了具有时变增益的容错共识协议。然后,通过分别考察正常智能体和受SSFF影响的智能体的动态,分析了共识收敛性。证明了在适当的时变增益下,采用所提出的恢复网络拓扑连通性策略和容错一致性协议的单积分器质量可以达到一致性。最后,通过数值模拟验证了理论结果的有效性。
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