论文标题

通过间歇状态反馈对网络严格反馈系统的分布式事件触发的控制

Distributed Event-triggered Control of Networked Strict-feedback Systems Via Intermittent State Feedback

论文作者

Sun, Libei, Huang, Xiucai, Song, Yongduan

论文摘要

即使在使用间歇性状态反馈时,即使单一的不匹配的非线性严格反馈系统,也可以实现稳定跟踪的技术困难。如果将此类系统与定向通信和状态触发设置联网,那么潜在的问题将变得更加复杂。在这项工作中,我们使用代理本身的触发状态和邻居代理的触发状态为多个代理系统提供了一个完全分布的神经适应性跟踪控制方案。为了避免由状态触发的虚拟控制器的非差异性,我们首先在常规状态反馈下开发了一个分布式的连续控制方案,我们在其上通过用触发的方案替换了前面方案中的状态,从而在其上构建了分布式事件触发的控制方案。引入了几种有用的引理,以允许使用这种替换来建立稳定性条件,以确保所有闭环信号最终均匀限制(SGUUB),并且输出跟踪误差会收敛到零左右的残差集。此外,通过正确选择设计参数,可以改善均等意义的跟踪性能。数值模拟验证了所提出的方法的益处和效率。

It poses technical difficulty to achieve stable tracking even for single mismatched nonlinear strict-feedback systems when intermittent state feedback is utilized. The underlying problem becomes even more complicated if such systems are networked with directed communication and state-triggering setting. In this work, we present a fully distributed neuroadaptive tracking control scheme for multiple agent systems in strict-feedback form using triggered state from the agent itself and the triggered states from the neighbor agents. To circumvent the non-differentiability of virtual controllers stemming from state-triggering, we first develop a distributed continuous control scheme under regular state feedback, upon which we construct the distributed event-triggered control scheme by replacing the states in the preceding scheme with the triggered ones. Several useful lemmas are introduced to allow the stability condition to be established with such replacement, ensuring that all the closed-loop signals are semi-globally uniformly ultimately bounded (SGUUB), with the output tracking error converging to a residual set around zero. Besides, with proper choices of the design parameters, the tracking performance in the mean square sense can be improved. Numerical simulation verifies the benefits and efficiency of the proposed method.

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