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Distributed finite-time tracking control of high-order multi-agent systems with delay-dependent communications

机译:具有延迟依赖通信的高阶多代理系统的分布式有限时间跟踪控制

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In light of the stability theory for functional differential equations, the leader-following exponential consensus problem of multi-agent systems with communication delays is investigated. All the follower agents have identical MIMO linear dynamics which can be expressed in any order, and only the delayed state information of each agent is delivered through local communications. By combining the tools of algebraic graph theory, matrix theory and Riccati equation, it is analytically proved that the active leader will be followed by all the follower agents in finite time. Furthermore, a upper bound on the communication time-delay that can be tolerated for the high-order multi-agent systems is obtained. Finally, a numerical example with simulations is presented to demonstrate the effectiveness of the theoretical result.
机译:鉴于功能微分方程的稳定性理论,研究了具有通信延迟的多助理系统的指数共识问题。所有跟随器代理都具有相同的MIMO线性动力学,其可以以任何顺序表达,并且仅通过本地通信提供每个代理的延迟状态信息。通过组合代数图理论,矩阵理论和Riccati方程的工具,分析证明了活跃的领导者将在有限时间内完成所有追随者。此外,可以获得可以为高阶多代理系统提供容忍的通信时滞的上限。最后,提出了一种具有模拟的数值示例以证明理论结果的有效性。

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