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Adaptive finite-time bipartite consensus for second-order multi-agent systems with antagonistic interactions

机译:具有拮抗互动的二阶多助剂系统的自适应有限时间二分三角互补

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Abstract This paper is concerned with the adaptive finite-time bipartite consensus problems for networked second-order multi-agent systems with antagonistic interactions and unknown external disturbances. A signed undirected graph is used to describe the interactions among agents. For the leaderless case, continuous nonlinear distributed protocols with adaptive update laws are given, which can not only guarantee the bipartite steady-state errors of any two agents converge to a small region in finite time, but also eliminate the chattering problem. Then, the proposed algorithm is extended to solve the adaptive finite-time bipartite consensus tracking problem for leader–follower case by designing distributed finite-time estimator. Simulation example is included to show the effectiveness of the presented methods. ]]>
机译:<![cdata [ Abstract 本文涉及具有拮抗互动和未知外部干扰的网络二阶多智能体系的自适应有限时间二分三角互补问题。签名的无向图形用于描述代理之间的相互作用。对于无线案例,给出了具有自适应更新法律的连续非线性分布式协议,这不仅可以保证任何两个代理的二分稳态误差会聚到有限时间内的小区域,还可以消除抖动问题。然后,通过设计分布式有限时间估计器,扩展了所提出的算法以解决领导者跟随者壳的自适应有限时间二分三角形共识问题。包括仿真示例以显示所提出的方法的有效性。 ]]>

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