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Consensus protocols for networked multiagent systems with a uniformly continuous quasi-resetting architecture

机译:具有统一连续的准重置体系结构的网络化多主体系统的共识协议

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The consensus problem appears frequently in coordination of multiagent systems in science and engineering, and involves the agreement of networked agents upon certain quantities of interest. In this paper, we focus on a new consensus protocol for networked multiagent systems using a resetting control architecture. Specifically, the control protocol consists of a delayed feedback, quasi-resetting control law such that controller resettings occur when the relative state measurements between an agent and its neighboring agents are zero. In contrast to standard impulsive resetting controllers, the proposed resetting is uniformly continuous, and hence, our approach does not require any well-posedness assumptions imposed by impulsive resetting controllers. In addition, using a Lyapunov-Krasovskii functional, it is shown that the multiagent system reaches asymptotic state equipartitioning, where the system steady-state is uniformly distributed over the system initial conditions. Finally, we develop L transient performance guarantees while accounting for system overshoot and excessive control effort.
机译:共识问题经常出现在科学和工程学中的多代理系统协调中,并且涉及网络代理在一定数量的兴趣上达成的协议。在本文中,我们集中于使用重置控制体系结构的网络多代理系统的新共识协议。具体而言,控制协议由延迟的反馈,准重置控制律组成,这样,当一个代理与其相邻代理之间的相对状态度量为零时,就会发生控制器重置。与标准的脉冲重置控制器相反,建议的重置是一致连续的,因此,我们的方法不需要任何由脉冲重置控制器强加的适定性假设。此外,使用Lyapunov-Krasovskii泛函表明,多智能体系统达到渐近状态均分,其中系统稳态在系统初始条件下均匀分布。最后,我们开发了L 瞬态性能保证,同时考虑了系统超调和过度的控制工作。

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