基于幅度最优准则的PID型控制器的自动整定

K. Papadopoulos, N. Tselepis, N. Margaris
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引用次数: 11

摘要

研究了一类单输入-单输出控制系统中PID控制器的在线整定问题。这个问题在许多行业应用程序中都遇到过,并且涉及到两个基本约束:1)存在不良的流程模型;2)无法度量流程的状态。针对这些约束条件,提出了一种系统的PID控制器自动整定方法。该方法的灵感来自于著名的幅度优化设计准则。在整个研究过程中,结果表明,在已知单输入-单输出线性过程模型的理想情况下,直接应用幅度最优原理对PID控制器进行调谐,揭示了该方法的一个特征,即最终闭环控制系统的“保持步进和频率响应的形状”。该形状在闭环控制系统的超调量(4.47%)、沉降和上升时间方面具有特定的性能。因此,本文提出的方法对PID控制器的参数进行自动整定,使控制回路的阶跃响应达到上述特定性能。为了应用该方法,对该过程进行了开环实验,对算法进行了初始化。该方法通过在线识别植物的主导时间常数和闭环系统的“寄生”时间常数来进行。通过在不同工业应用中遇到的两个过程模型的仿真实例,证明了所提出方法的潜力。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
On the automatic tuning of PID type controllers via the Magnitude Optimum criterion
The problem of on line tuning the PID controller used in type-I single input-single output control systems is investigated. This problem is met over many industry applications and involves two basic constraints 1) the existence of a poor process model and 2) inability to measure the states of the process. With respect to these constraints, a systematic method for automatic tuning of the PID controller is proposed. The method is inspired from the well known Magnitude Optimum design criterion. Throughout the investigation, it is shown that the straightforward application of the Magnitude Optimum principle for tuning the PID controller in the ideal case of a known single input-single output linear process model, reveals a feature of the method called `the preservation of the shape of the step and frequency response' of the final closed-loop control system. This shape is characterized by a specific performance in terms of overshoot (4.47%), settling and rise time of the closed-loop control system. For that reason, the proposed method tunes the PID controller's parameters automatically, so that the step response of the control loop achieves the aforementioned specific performance. For applying the method, an open-loop experiment of the process is carried out which serves for initializing the algorithm. The method proceeds by identifying on line the dominant time constants of the plant and the `parasitic' one of the closed-loop system. The potential of the proposed method is justified via simulation examples for two process models met in various industry applications.
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