Analisa Performansi Beberapa Metode Kontroler PID Pada Magnetic Ball

Tamaji Tamaji, Yoga Alif Kurnia Utama, Adrianus Raffel
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Abstract

PID controller is a controller that is still widely used in the industrial world. ThePID controller is proven to provide good control performance even though ithas a simple and easy-to-understand algorithm. The important thing in thedesign of this PID controller is to determine the controller parameters or tuning. Project tries to implement advanced PID tuning which involves several tuning methods to get the best performance on a system or plant that is unstable or critically stable, such as controlling the height of a magnetic ball. Some of the methods that will be discussed here are Ziegler-Nichols, Non-control, On Off, Trial Error, and Chien-Hrones-Reswick (C-H-R). From results show that of the five PID Control methods to control the position of the magnetic ball, the best sequential control method is PID Control Trial Error, PID Control On Off, PID Ziegler-Nichols, Chien-Hrones-Reswick Method, and PID Non-Control
分析电磁球上的强迫行为
PID控制器是目前在工业领域仍广泛应用的一种控制器。pid控制器被证明提供良好的控制性能,即使它是一个简单和易于理解的算法。在此PID控制器的设计中,重要的是控制器参数的确定或整定。项目试图实现先进的PID整定,其中包括几种整定方法,以在不稳定或极度稳定的系统或设备上获得最佳性能,例如控制磁球的高度。这里将讨论的一些方法是齐格勒-尼科尔斯法、非控制法、开-关法、试错法和吉恩-赫罗纳斯-瑞斯维克法。结果表明,在控制磁球位置的五种PID控制方法中,顺序控制的最佳方法是PID控制试误法、PID控制开断法、PID Ziegler-Nichols法、Chien-Hrones-Reswick法和PID非控制法
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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