无控制器状态交换的非内省智能体时变网络中的同步

Tao Yang, H. F. Grip, A. Saberi, Meirong Zhang, A. Stoorvogel
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引用次数: 7

摘要

在时变拓扑下,我们考虑了两个同步问题,即相同线性智能体网络的状态同步问题和非相同线性智能体网络的调节输出同步问题。假设智能体是多输入多输出(MIMO)、最小相位、右可逆和非内省的(即它们只接收来自相邻智能体的相对输出信息,但缺乏关于自身状态或输出的独立信息)。时变拓扑假设在有限数量的有向图之间切换,有向生成树具有任意先验给定的不消失停留时间。此外,代理不能与其相邻代理交换控制器状态。为了解决这些问题,我们提出了一种基于低增益和高增益设计技术相结合的分布式动态协议。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Synchronization in time-varying networks of non-introspective agents without exchange of controller states
We consider two synchronization problems, namely, state synchronization for networks of identical linear agents, and regulated output synchronization for networks of non-identical linear agents, under a time-varying topology. Agents are assumed to be multiple-input multiple-output (MIMO), minimum-phase, right invertible and non-introspective (i.e., they only receive relative output information from their neighboring agents, but lack independent information about their own states or outputs). The time-varying topology is assumed to switch among a finite number of directed graphs containing a directed spanning tree with an arbitrarily a priori given non-vanishing dwell time. Moreover agents are unable to exchange of controller states with their neighboring agents. For solving each problem, we propose a distribute dynamic protocol based on a combination of low-gain and high-gain design techniques.
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