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Distributed velocity-constrained consensus of second-order multi-agent systems with switching topologies and delays

机译:具有切换拓扑和时滞的二阶多智能体系统的速度约束分布共识

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In this paper, a velocity-constrained consensus problem is studied for second-order multi-agent systems with nonuniform communication delays under the assumption that the union of the graphs has directed spanning trees among each time interval of certain bounded length. It is shown that the communication delays can be arbitrarily bounded and the number of all possible edge weights is infinite. Finally, numerical examples are included to illustrate the theoretical results.
机译:本文在图的并集已在一定有界长度的每个时间间隔内指向生成树的情况下,研究了通信延迟不均匀的二阶多智能体系统的速度受限共识问题。可以看出,通信延迟可以被任意地限制并且所有可能的边缘权重的数量是无限的。最后,通过算例说明了理论结果。

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