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Semi-global state synchronization for discrete-time multi-agent systems subject to actuator saturation and unknown nonuniform input delay

机译:用于离散时间的多种代理系统的半全局状态同步,执行致动器饱和度和未知的非均匀输入延迟

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This paper studies semi-global state synchronization of discrete-time homogeneous networks with diffusive full-state coupling or partial-state coupling subject to actuator saturation and unknown nonuniform input delay. We assume that agents are at most critical unstable, that is the agents have all its eigenvalues in the closed unit disc. The communication network is associated with an undirected and weighted graph, which is represented by a row stochastic matrix. In this paper, we derive an upper bound for the input delay tolerance, which explicitly depends only on the agent dynamics. Moreover, for any unknown delay less than the upper bound, we propose a linear static protocol for MAS with full-state coupling and a linear dynamic protocol for MAS with partial-state coupling based on a low-gain methodology such that state synchronization is achieved among agents for any initial conditions in a priori given compact set. (C) 2019 European Control Association. Published by Elsevier Ltd. All rights reserved.
机译:本文研究了与散差的全状态耦合或部分状态耦合的离散时间均匀网络的半全局状态同步,经过致动器饱和度和未知的非均匀输入延迟。我们假设代理处于最关键的不稳定,即代理商在封闭的单元盘中拥有其所有特征值。通信网络与无向和加权图相关联,该图是由行随机矩阵表示的。在本文中,我们推导出输入延迟公差的上限,这显​​式仅取决于代理动态。此外,对于小于上限的任何未知延迟,我们为基于低增益方法的低增益方法提出了具有全状态耦合的MAS的线性静态协议,以及用于部分状态耦合的MAS,使得实现状态同步在先验的紧凑型集合中的任何初始条件的代理中。 (c)2019年欧洲控制协会。 elsevier有限公司出版。保留所有权利。

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