由实理性控制器反馈连接的所有可稳定时滞对象的类别

T. Hoshikawa, K. Yamada, Y. Tatsumi, Y. Zhai
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引用次数: 0

摘要

控制系统的时滞问题是实际系统控制所涉及的问题之一。时滞通常使传递函数具有无穷多个极点,这就给保证时滞控制系统的稳定性和确定控制特性带来了困难。克服这个问题的方法之一是使用改进的Smith预测器。修正的Smith预测器是包含时滞对象模型的控制器,这样既保证了时滞控制系统的稳定性,又便于确定控制特性。然而,修正的Smith预测器是一个非理性的控制器。也就是说,修正的Smith预测器也有无限个极点。这使得控制器的设计变得非常困难。此外,所设计的控制器一般都是非常高阶的,那么设计成本就变得昂贵。基于这些原因,采用合理的控制器既能稳定时滞控制系统,又能使传递函数具有有限个极点。本文用实理性控制器澄清了具有反馈连接的所有可稳定时滞对象的类别。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
The class of all stabilizable time-delay plants with feedback connection by real rational controllers
One of the problems involved in the control of the real system is the time-delay of the control system. The time-delay generally makes the transfer function have an infinite number of poles, then it makes to guarantee the stability of time-delay control system and to specify the control characteristics difficult. One of the ways to overcome this problem is to use the modified Smith predictor. The modified Smith predictor is the controller including the model of time-delay plant, and this makes to guarantee the stability of time-delay control system and to specify the control characteristics easily. However, the modified Smith predictor is an irrational controller. That is, the modified Smith predictor also has infinite number of poles. This causes that the controller design becomes very difficult. In addition, the designed controller is generally very high order, then the design cost becomes expensive. From these reasons, it is desirable both to stabilize the time-delay control system and to make the transfer function have a finite number of poles, by using rational controllers. In this paper, we clarify the class of all stabilizable time-delay plants with feedback connection by real rational controllers.
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