Modelling and Analysis of Ziegler-Nichols and Chien-Hrones-Reswick Tuning PID on DC Motor Speed Control

Reza Sarwo Widagdo, Balok Hariadi, Kukuh Setyadjit
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Abstract

There have been many studies on the methods used to control DC motors, one of which is the proportional-integral-derivative (PID) control method. The tuning procedure is carried out by trial and error whose results are not necessarily correct, to overcome this problem an alternative is needed that can achieve a better and faster value for the tuning process. Our contribution is explained the conventional PID (Ziegler - Nichols) and modificated PID (Chien - Hrones - Reswick). We also analyze the response of the speed-controlled DC motor using the Proportional, Integral, and Derivative parameters obtained from the tuning method described above. We also discuss the advantages and disadvantages of each formula of these methods. Implementing both methods using a Matlab, creating a more convenient and user-friendly environment for engineering students and practicing engineers to better understand the formulas of his PID controller tuning method.
Ziegler-Nichols和Chien-Hrones-Reswick整定PID在直流电机转速控制中的建模与分析
人们对直流电机的控制方法进行了许多研究,其中一种方法是比例积分导数(PID)控制方法。调优过程是通过试错来执行的,其结果不一定是正确的,为了克服这个问题,需要一种替代方案,可以为调优过程实现更好、更快的值。我们的贡献是解释传统PID (Ziegler - Nichols)和改进PID (Chien - Hrones - Reswick)。我们还使用上述调谐方法获得的比例、积分和导数参数分析了调速直流电动机的响应。我们还讨论了这些方法中每个公式的优缺点。使用Matlab实现这两种方法,为工科学生和实习工程师更好地理解他的PID控制器整定方法的公式创造了一个更方便和用户友好的环境。
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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