Observer-based event-triggered control: A discrete-time approach

L. B. Groff, L. Moreira, J. G. D. Silva, D. Sbarbaro-Hofer
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引用次数: 15

Abstract

This paper addresses the problem of designing an event-triggered strategy for discrete-time systems with an observer-based controller. The considered system has the actuator and the sensor in different nodes separated by a network. The strategy consists in minimizing the use of the network by only transmitting data from the observer to the controller and from the controller to the actuator when a trigger is generated by an event-trigger function. Based on the Lyapunov theory, conditions for the stability of the closed-loop system in terms of linear matrix inequalities (LMIs) are derived. Convex optimization problems are provided to tune the proposed trigger functions aiming at reducing the usage of the network. Simulation examples illustrate the proposed method and compare the efficiency of the proposed optimization problems.
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基于观测器的事件触发控制:一种离散时间方法
本文研究了具有观测器控制器的离散系统的事件触发策略设计问题。所考虑的系统的执行器和传感器在不同的节点上,通过网络分开。该策略包括通过仅在事件触发函数生成触发器时将数据从观测器传输到控制器和从控制器传输到执行器,从而最大限度地减少网络的使用。基于李雅普诺夫理论,导出了用线性矩阵不等式(lmi)表示闭环系统稳定的条件。提出了凸优化问题来调整所提出的触发函数,旨在减少网络的使用。仿真实例验证了所提方法,并比较了所提优化问题的效率。
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