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A Switched System Approach to Exponential Stabilization Through Communication Network

机译:通过通信网络实现指数稳定的交换系统方法

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This paper considers a networked control loop, where the plant is a “slave” part, and the remote controller and observer constitute the “master”. Since the performance of networked control systems (NCS) depends on the quality of service (QoS) available from the network, it is worth to design a controller that takes into account qualitative information on the QoS in realtime. The goal of the design is to provide a controller that guarantees the following two things: 1) high performances (here expressed by exponential decay rates) when the QoS remains globally the same and 2) global stability when the QoS changes. In order to guarantee the global stability, the controller will switch by respecting a dwell time constraint. The dwell time parameters are obtained by using the switched system theories and the obtained conditions are linear matrix inequalities. An experiment illustrates how the controller can be implemented for a control over Internet application (remote control of a small robot).
机译:本文考虑了一个网络控制环路,其中工厂是“从属”部分,遥控器和观察者构成了“主”部分。由于网络控制系统(NCS)的性能取决于可从网络获得的服务质量(QoS),因此值得设计一种控制器,该控制器应实时考虑QoS的定性信息。该设计的目标是提供一种控制器,该控制器可确保以下两点:1)当QoS总体上保持相同时的高性能(此处以指数衰减率表示),以及2)QoS改变时的全局稳定性。为了保证全局稳定性,控制器将通过遵守驻留时间限制进行​​切换。使用切换系统理论获得停留时间参数,并且获得的条件是线性矩阵不等式。实验说明了如何为互联网应用程序的控制(小型机器人的远程控制)实现控制器。

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