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Emulation-based output regulation of linear networked control systems subject to scheduling and uncertain transmission intervals

机译:基于仿真的线性网络控制系统的输出调节,其调度和不确定传输间隔

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We investigate output regulation for linear networked control systems using the emulation approach. We consider a regulator solving the problem for linear systems in the absence of the network, by following the Francis-Wonham framework. Next, the network is taken into consideration, in particular the induced time-varying inter-transmission intervals and scheduling constraints, and we model the overall system dynamics as a hybrid system. We show that only practical regulation can be achieved in general since the steady-state control input steering the output to zero cannot be generated in the networked context (in general). Explicit upper bounds on the output asymptotic gain and on the maximum allowable transmission interval guaranteeing boundedness of the closed-loop trajectories are provided, which are shown to be related.
机译:我们使用仿真方法调查线性网络控制系统的输出调节。我们考虑了一个监管机构,解决了在弗朗西斯·不裁视框架缺席网络的情况下解决线性系统的问题。接下来,考虑网络,特别是诱导的时变的间传输间隔和调度约束,以及我们将整体系统动态模拟为混合系统。我们表明,只有在网络上下文中不能生成输出到零的稳态控制输入,只能实现实际的规则,因为在网络上下文中(一般来说)。提供了输出渐近增益上的显式上限,并提供了保证闭环轨迹的最大允许传输间隔的最大允许的传输间隔,这被显示为相关。

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