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Optimal sequence-based LQG control over TCP-like networks subject to random transmission delays and packet losses

机译:在类似TCP的网络上基于最优序列的LQG控制,该控制受随机传输延迟和数据包丢失的影响

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This paper addresses the problem of sequence-based controller design for Networked Control Systems (NCS), where control inputs and measurements are transmitted over TCP-like network connections that are subject to random transmission delays and packet losses. To cope with the network effects, the controller not only sends the current control input to the actuator, but also a sequence of predicted control inputs at every time step. In this setup, we derive an optimal solution to the Linear Quadratic Gaussian (LQG) control problem and prove that the separation principle holds. Simulations demonstrate the improved performance of this optimal controller compared to other sequence-based approaches.
机译:本文解决了网络控制系统(NCS)的基于序列的控制器设计问题,其中控制输入和测量值通过类似TCP的网络连接进行传输,这些连接容易受到随机传输延迟和数据包丢失的影响。为了应对网络效应,控制器不仅将当前控制输入发送到执行器,而且还会在每个时间步长发送一系列预测控制输入。在此设置中,我们导出了线性二次高斯(LQG)控制问题的最佳解决方案,并证明了分离原理成立。仿真表明,与其他基于序列的方法相比,该最佳控制器的性能有所提高。

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