Research of Modeling and Control Method for Electromagnetic Levitation System

There has been wide interest in the control scheme of the electromagnetic levitation system due to its disadvantages of nonlinearity and open-loop uncertainty. A typical coil-ball levitation system is used in research. The forces of the ball are analyzed and a dynamic model of the whole electromagne...

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Published inApplied Mechanics and Materials Vol. 651-653; pp. 812 - 817
Main Authors He, Tian Peng, Zou, Zhi Gang, Zeng, Hui, Zheng, Jian Guo
Format Journal Article
LanguageEnglish
Published Zurich Trans Tech Publications Ltd 01.09.2014
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Abstract There has been wide interest in the control scheme of the electromagnetic levitation system due to its disadvantages of nonlinearity and open-loop uncertainty. A typical coil-ball levitation system is used in research. The forces of the ball are analyzed and a dynamic model of the whole electromagnetic levitation system is established. Based on the nonlinear state-space model, the coil-ball system is linearized and then a LQR control approach is proposed. Simulation results show that, compared with conventional pole assignment scheme, the electromagnetic levitation system under the proposed control approach gets a better performance, including smaller overshot and faster response.
AbstractList There has been wide interest in the control scheme of the electromagnetic levitation system due to its disadvantages of nonlinearity and open-loop uncertainty. A typical coil-ball levitation system is used in research. The forces of the ball are analyzed and a dynamic model of the whole electromagnetic levitation system is established. Based on the nonlinear state-space model, the coil-ball system is linearized and then a LQR control approach is proposed. Simulation results show that, compared with conventional pole assignment scheme, the electromagnetic levitation system under the proposed control approach gets a better performance, including smaller overshot and faster response.
Author Zou, Zhi Gang
He, Tian Peng
Zeng, Hui
Zheng, Jian Guo
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  organization: Communication Training Base of the Pla General Staff Headquarters
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Cites_doi 10.1049/ep.1965.0312
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Keywords Pole Assignment
Electromagnetic Levitation System
LQR
Optimal Control
State Space
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Snippet There has been wide interest in the control scheme of the electromagnetic levitation system due to its disadvantages of nonlinearity and open-loop uncertainty....
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