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Passivity based state synchronization of homogeneous discrete-time multi-agent systems via static protocol in the presence of input delay

机译:在存在输入延迟的情况下,通过静态协议对同类离散时间多智能体系统进行基于无源性的状态同步

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摘要

This paper studies state synchronization of homogeneous discrete-time multi-agent systems (MAS) with partial-state coupling (i.e., agents are coupled through part of their states) via static protocol in the presence of input delay. Both uniform input delay and nonuniform input delay are considered. We identify one class of agents for which a static linear protocol can be designed, which is named squared-down passifiable via input feedforward. We derive an upper bound for the input delay tolerance, which explicitly depends on the agent dynamics. Moreover, for any unknown delay satisfying this upper bound, a parameterized static protocol is proposed for each agent such that state synchronization is achieved among agents with uniform or nonuniform input delay. (C) 2018 European Control Association. Published by Elsevier Ltd. All rights reserved.
机译:本文研究在存在输入延迟的情况下通过静态协议对具有部分状态耦合的均质离散时间多智能体系统(MAS)的状态同步(即,智能体通过其部分状态耦合)。同时考虑均匀输入延迟和非均匀输入延迟。我们确定可以为其设计静态线性协议的一类代理,该代理可通过输入前馈命名为平方下可钝化。我们得出输入延迟容限的上限,该上限明确取决于代理动态。此外,对于满足此上限的任何未知延迟,建议为每个代理提供参数化的静态协议,以便在具有统一或非均匀输入延迟的代理之间实现状态同步。 (C)2018欧洲控制协会。由Elsevier Ltd.出版。保留所有权利。

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