Fully Distributed Consensus Control for Second-order Uncertain Nonlinear Multi-Agent Systems via an Event-triggered Approach

Zhenxing Li, Chengdong Yang, Zhaodong Liu, A. Zhang, Jianlong Qiu
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Abstract

This paper studies the event-triggered consensus problem of second-order uncertain nonlinear multi-agent systems (MASs). Based on the local sampled measurement information, we propose an adaptive event-triggered consensus algorithm. The adaptive algorithm estimates not only the uncertain parameters of agent dynamics but also the global topology information. Hence, our consensus algorithm does not rely on global topology information, that is, the proposed consensus algorithm is full distributed. Moreover, we prove that Zeno behavior is ruled out. Finally, a simulation is given to verify the effectiveness of the proposed algorithm.
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基于事件触发方法的二阶不确定非线性多智能体系统的全分布式一致性控制
研究了二阶不确定非线性多智能体系统的事件触发一致性问题。基于局部采样测量信息,提出了一种自适应事件触发一致性算法。该自适应算法不仅可以估计agent动态的不确定参数,还可以估计全局拓扑信息。因此,我们的共识算法不依赖于全局拓扑信息,即我们提出的共识算法是全分布式的。此外,我们证明了芝诺行为被排除。最后通过仿真验证了该算法的有效性。
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