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A TDOF PID Control system design by referring to the MD-PID Control system and its sensitivities

机译:参照MD-PID控制系统及其灵敏度的TDOF PID控制系统设计

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PID controls are widely used as a basic control technology in the industrial control system today. However, tuning of PID control systems is not always easy, because of their simple control structures for wide classes of industrial control processes. The tuning of a two-degree-of-freedom(TDOF) PID control system which is increased configuration parameters, is more difficult. In order to obtain good control performances for wide classes of process control systems, we developed a Model-Driven PID(MD-PID) control system[15], [16], [17], [18], [19], [20] about ten years ago, by extending the “Model Driven control” concept proposed by Kimura[1].The MD-PID control system has a cascade control structure that is an Internal Model Control(IMC) by Morari[10] as the main controller and a PD control loop as the lower loop including the control process. In this paper, after reviewing the design method for a MD-PID Control system with new PD feedback design method, we propose a new design method for a TDOF PID control system by referring to the Model-Driven PID control system and its sensitivities.
机译:PID控制已广泛用作当今工业控制系统中的基本控制技术。但是,由于PID控制系统适用于各种工业控制过程,因此其控制结构简单,因此调节起来并不总是那么容易。增大配置参数的两自由度(TDOF)PID控制系统的调节更加困难。为了在各种过程控制系统中获得良好的控制性能,我们开发了一种模型驱动的PID(MD-PID)控制系统[15],[16],[17],[18],[19],[ 20]大约十年前,通过扩展Kimura [1]提出的“模型驱动控制”概念。MD-PID控制系统具有级联控制结构,该结构是Morari [10]作为内部模型控制(IMC)。主控制器和PD控制回路作为下级回路,包括控制过程。本文在结合新的PD反馈设计方法对MD-PID控制系统的设计方法进行回顾之后,参考模型驱动PID控制系统及其灵敏度,提出了TDOF PID控制系统的新设计方法。

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