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Semi-Global State Synchronization for Multi-Agent Systems Subject to Actuator Saturation and Unknown Nonuniform Input Delay

机译:多种子体系统对致动器饱和度的半全局状态同步和未知的非均匀输入延迟

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摘要

The agent dynamics in a multi-agent system subject to both actuator saturation and unknown nonuniform input delay impose difficulty in the protocol design for all agents achieving state synchronization, although solutions can be found for agents with actuator saturation and for agents with input delay. In this paper, we design a low-gain based protocol for each agent such that the protocol output (agents' inputs) can be squeezed enough and the saturation is not activated. Moreover, an upper bound of the input delay is obtained. This paper focuses on a class of agent systems, i.e. all agents' eigenvalues are in the closed left half plane (that is at most unstable agents), and topology describing the coupling among agents is undirected, but weighed. The numerical results with six agents coupled with full states and partial states illustrates the effectiveness of the proposed protocol design.
机译:在致动器饱和度和未知的非均匀输入延迟的多种子体系统中的代理动态在实现状态同步的所有代理的协议设计中施加困难,尽管可以找到具有致动器饱和度的代理和具有输入延迟的试剂的溶剂。在本文中,我们为每个代理设计了基于低增益的协议,使得可以足够挤压协议输出(代理输入),并且不会激活饱和度。此外,获得了输入延迟的上限。本文重点介绍一类代理系统,即所有代理人的特征值在封闭的左半平面(即最不稳定的代理),并且描述了代理之间耦合的拓扑是无向的,而是称重。六种试剂与全州和部分状态耦合的数值结果说明了所提出的协议设计的有效性。

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