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Weighted sensitivity design of PID controllers for time-delay systems with a Smith predictor

机译:具有史密斯预测因子的时间延迟系统的PID控制器加权灵敏度设计

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Time delays in the feedback loop complicate the analysis and design of a controller system. The use of a Smith predictor in combination with a proportional integral derivative (PID) controller is a well-known technique for dealing with delays in stable systems. In this paper, a graphical method is introduced for finding all stabilizing PID controllers that satisfy a weighted sensitivity constraint of any arbitrary-order transfer function with time delay when the Smith predictor is used. Use of the Smith predictor tends to increase the size of the set of all PID controllers that satisfy the weighted sensitivity constraint in the controller parameter space. A numerical example is used to compare the set of PID controllers with and without a Smith predictor. A key advantage of this approach is that it requires only the frequency response of the plant.
机译:反馈回路中的时间延迟使控制器系统的分析和设计复杂化。使用史密斯预测器与比例积分衍生物(PID)控制器的使用是一种众所周知的技术,用于处理稳定系统中的延迟。在本文中,引入了一种图形方法,用于查找所有稳定的PID控制器,该控制器满足在使用史密斯预测器的时间延迟时达到任何任意顺序传递函数的加权灵敏度约束。使用史密斯预测器倾向于增加满足控制器参数空间中的加权灵敏度约束的所有PID控制器集的大小。数值示例用于比较具有和没有史密斯预测器的PID控制器集。这种方法的一个关键优势在于它只需要工厂的频率响应。

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