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Stabilizing Scheduling Policies for Networked Control Systems

机译:稳定网络控制系统的调度策略

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This paper deals with the problem of allocating communication resources for Networked Control Systems (NCSs). We consider an NCS consisting of a set of discrete-time linear time-invariant plants whose stabilizing feedback loops are closed through a shared communication channel. Due to a limited communication capacity of the channel, not all plants can exchange information with their controllers at any instant of time. We propose a method to find periodic scheduling policies under which global asymptotic stability of each plant in the NCS is preserved. The individual plants are represented as switched systems, and the NCS is expressed as a weighted directed graph. We construct stabilizing scheduling policies by employing cycles on the underlying weighted directed graph of the NCS that satisfy appropriate contractivity conditions. We also discuss algorithmic design of these cycles.
机译:本文涉及为网络控制系统(NCSS)分配通信资源的问题。我们考虑由一组离散时间线性时间不变设备组成的NC,其稳定反馈回路通过共享通信信道关闭。由于通道的通信能力有限,并非所有工厂都可以在任何时间内与控制器交换信息。我们提出了一种方法来查找定期调度策略,在其中保留了NCS中每个工厂的全局渐近稳定性。单个植物表示为切换系统,并且NCS表示为加权指向图。通过在满足适当的合同条件的NCS的基础加权指向图上使用循环来构建稳定调度策略。我们还讨论了这些周期的算法设计。

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