LQG control for systems with random unbounded communication delay

F. Bengtsson, B. Hassibi, T. Wik
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引用次数: 2

Abstract

In this paper LQG control over unreliable communication links is examined. That is to say, the communication channels between the controller and the actuators and between the sensors and the controller are unreliable. This is of growing importance as networked control systems and use of wireless communication in control are becoming increasingly common. A proposed approach is to use tree codes to turn lossy channels into ones with a random delay. The problem of how to optimize LQG control in this case is examined, and it is found that to optimize LQG control previous control signals must also be used. Only the situation where communication between the components is done with acknowledgments is examined. An optimal solution is derived for finite horizon discrete hold-input LQG control for this case. The solution is compared with standard LQG control in simulations, which demonstrate that a significant improvement in the cost can be achieved when the probability of delay is high.
随机无界通信延迟系统的LQG控制
本文研究了不可靠通信链路上的LQG控制。也就是说,控制器与执行器之间以及传感器与控制器之间的通信通道是不可靠的。随着网络控制系统和无线通信在控制中的使用变得越来越普遍,这一点变得越来越重要。一种建议的方法是使用树码将有损信道转换为具有随机延迟的信道。研究了在这种情况下如何优化LQG控制的问题,发现优化LQG控制还必须使用以前的控制信号。仅检查组件之间使用确认进行通信的情况。针对这种情况,导出了有限水平离散保持输入LQG控制的最优解。仿真结果表明,该方法与标准LQG控制方法相比,在延迟概率较大的情况下,可以显著提高控制成本。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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