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Multi-Agent Consensus under Delayed Feedback: Fundamental Constraint on Graph and Fundamental Bound on Delay

机译:延迟反馈下的多项代理协商一致意见:关于图表和基本局限性的基本限制

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In this paper, we study the consensus problem for discrete-time multi-agent systems over an undirected, fixed network communication graph. We assume that the agents' input is subject to a constant albeit possibly unknown time delay, and employ a distributed dynamic state feedback control protocol. Drawing upon concepts and techniques from robust control, notably those concerning gain margin optimization and analytic interpolation, we derive explicit, closed-form conditions for general linear agents to achieve consensus. Our results display an explicit dependence of the consensus condition on the agent's unstable dynamics and the delay value, showing that delayed communication between agents will generally hinder consensus and impose restrictions on the network topology. We also show that a lower bound on the maximal delay allowable for consensus can be computed by a simple line search method.
机译:在本文中,我们在无向固定网络通信图中研究了离散时间多代理系统的共识问题。 我们假设代理输入虽然可能是未知的时间延迟,并且采用分布式动态状态反馈控制协议。 借鉴强大控制的概念和技术,特别是那些有关增益保证金优化和分析插值的概念和技术,我们推导出用于一般线性代理的明确,闭合形式条件,以实现共识。 我们的结果显示了共识状况对代理人不稳定动态和延迟值的明确依赖,显示代理商之间的延迟通信通常会妨碍与网络拓扑的共识并施加限制。 我们还表明,可以通过简单的线路搜索方法计算允许的最大延迟的最大延迟的下限。

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