Levitation and Thrust Control of a Maglev LCD Glass Conveyor

被引:0
|
作者
Kim, Chang-Hyun [1 ]
Lee, Jong-Min [1 ]
Han, Hyung-Suk [1 ]
Kim, Bong-Seup [1 ]
机构
[1] Korea Inst Machinery & Mat, Dept Magnet Levitat & Linear Dr, Taejon 305343, South Korea
来源
IECON 2011: 37TH ANNUAL CONFERENCE ON IEEE INDUSTRIAL ELECTRONICS SOCIETY | 2011年
关键词
SYSTEM;
D O I
暂无
中图分类号
T [工业技术];
学科分类号
08 ;
摘要
In this paper, the levitation and thrust control of a magnetically levitated (Maglev) LCD glass conveyor is introduced. In order to levitate the conveyor system, electromagnets (EM) and permanent magnets (PM) are used together. Due to the use of the PM, power consumption for levitation can be significantly reduced. To thrust the vehicle, a linear induction motor (LIM) is designed and installed. Power required for the levitation and thrust is supplied from a contactless power supply (CPS), hence completely contactless operation is possible. The levitation electromagnets are controlled to maintain a constant air gap. Dual gap sensors are used for one electromagnet and the combination of the sensors decreases air gap fluctuation when the vehicle is passing by the rail joints. Precise thrust control with velocity profile generation is proposed for loading and unloading of payloads at desired positions. Simulations and experimental results are given to verify the levitation and thrust control.
引用
收藏
页数:6
相关论文
共 50 条
  • [41] Design and Control of a Novel Six-DOF Maglev Platform For Positioning and Vibration Isolation
    Gong, Zhaopei
    Ding, Liang
    Gao, Haibo
    Yue, Honghao
    Liu, Rongqiang
    Deng, Zongquan
    2017 2ND INTERNATIONAL CONFERENCE ON ADVANCED ROBOTICS AND MECHATRONICS (ICARM), 2017, : 155 - 160
  • [42] Thrust control of superconducting DC linear motor for electromagnetic launch
    Li, Guanchun
    Li, Jie
    PROCEEDINGS OF THE 36TH CHINESE CONTROL CONFERENCE (CCC 2017), 2017, : 6424 - 6427
  • [43] Nonlinear control of a magnetic levitation shaft by numerical inversion of its behavioral model
    Bonnet, Stephane
    De Miras, Jerome
    2014 EUROPEAN CONTROL CONFERENCE (ECC), 2014, : 2810 - 2815
  • [44] The Active Control of Maglev Stationary Self-Excited Vibration With a Virtual Energy Harvester
    Li, Jinhui
    Li, Jie
    Zhou, Danfeng
    Cui, Peng
    Wang, Lianchun
    Yu, Peichang
    IEEE TRANSACTIONS ON INDUSTRIAL ELECTRONICS, 2015, 62 (05) : 2942 - 2951
  • [45] Sliding Mode Control based on Disturbance Observer for Magnetic Levitation Positioning Stage
    Zhang Shansi
    Ma Shuyuan
    Wang Weiming
    JOURNAL OF ELECTRICAL ENGINEERING & TECHNOLOGY, 2018, 13 (05) : 2116 - 2124
  • [46] MagnetoShield: Prototype of a Low-Cost Magnetic Levitation Device for Control Education
    Takacs, Gergely
    Mihalik, Jakub
    Mikulas, Erik
    Gulan, Martin
    PROCEEDINGS OF THE 2020 IEEE GLOBAL ENGINEERING EDUCATION CONFERENCE (EDUCON 2020), 2020, : 1516 - 1525
  • [47] Prototype development and levitation of a large rectangular platform with multi-axis control
    Kundu, Janardan
    INTERNATIONAL JOURNAL OF AUTOMATION AND CONTROL, 2023, 17 (02) : 153 - 170
  • [48] Dynamic control rules for conveyor intersections in a truck-assembly paint shop
    Bookbinder, James H.
    INTERNATIONAL JOURNAL OF ADVANCED MANUFACTURING TECHNOLOGY, 2015, 76 (9-12) : 1515 - 1527
  • [49] A novel control-rod drive mechanism via electromagnetic levitation in MNSR
    Divandari, Mohammad
    Hashemi-Tilehnoee, Mehdi
    Khaleghi, Masoud
    Hosseinkhah, Mohammadreza
    NUKLEONIKA, 2014, 59 (02) : 73 - 79
  • [50] Control-oriented modeling for the electrodynamic levitation with permanent magnet Halbach array
    Hu, Yongpan
    Long, Zhiqiang
    Xu, Yunsong
    Wang, Zhiqiang
    INTERNATIONAL JOURNAL OF APPLIED ELECTROMAGNETICS AND MECHANICS, 2021, 67 (03) : 375 - 392