Abstract
This paper presents the improved zero power levitation control algorithm for a quadruple hybrid EMS (Electromagnetic Suspension) system. Quadruple hybrid EMS system is a united form of four hybrid EMS systems one on each corner coupled with a metal plate. Technical issue in controlling a quadruple hybrid EMS system is the permanent magnet's equilibrium point deviation caused by design tolerance which eventually leads to a limited zero power levitation control that only satisfies the zero power levitation in one or two hybrid EMS system among the four hybrid EMS system. In order to satisfy a complete zero power levitation control of the quadruple hybrid EMS system, the proposed method presented in this paper adds a compensating algorithm which adjusts the gap reference of each individual axe. Later, this paper proves the stability and effectiveness of the proposed control algorithm via experiment and disturbance test.
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CITATION STYLE
Cho, S. Y., Kim, W. H., Jang, I. S., Kang, D. W., & Lee, J. (2013). Robust zero power levitation control of quadruple hybrid EMS system. Journal of Electrical Engineering and Technology, 8(6), 1451–1456. https://doi.org/10.5370/JEET.2013.8.6.1451
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