Design of PI Approximated 2 Degree of Freedom Control for Electromagnetic Levitation Application

S. Mangkalajan, Kamon Jirasereeamongkul, C. Deelertpaiboon, J. Chanwutitum, K. Higuchi
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引用次数: 1

Abstract

In this paper, a digital controller is applied to distance control of the Magnetic Levitation System (MLS). The characteristics of the magnetic levitation are very nonlinear. This is a prime reason for the difficulty of controlling the magnetic levitation. Conventional control is normally not appropriate for this kind of application. Hence, a robust digital controller of the magnetic levitation using a combination of Proportional-Integral (PI) and Approximated 2 Degree of Freedom (A2DOF) controller method for keeping the level of magnetic ball with sudden change of setpoint is proposed. The simulation using MATLAB/Simulink and experimental results are shown. It demonstrates that the proposed digital controller of which gain parameters are determined by the proposed method satisfies the given specifications.
用于电磁悬浮的PI近似2自由度控制设计
本文将数字控制器应用于磁悬浮系统的距离控制。磁悬浮的特性是非常非线性的。这是难以控制磁悬浮的主要原因。常规控制通常不适合这种应用。为此,提出了一种结合比例积分(PI)和近似2自由度(A2DOF)控制方法的鲁棒磁悬浮数字控制器,用于保持设定点突变时磁球的液位。给出了利用MATLAB/Simulink进行的仿真和实验结果。结果表明,采用该方法确定增益参数的数字控制器满足给定的参数要求。
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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