Proposal of a compact magnetically levitated transverse flux permanent magnet linear synchronous motor as a 6‐DOF transport carrier
Author:
Affiliation:
1. Department of Electrical Engineering and Information SystemsThe University of TokyoJapan
2. Kovery Company Ltd.Gyeonggi‐do 15845Korea
Publisher
Institution of Engineering and Technology (IET)
Subject
General Engineering,Energy Engineering and Power Technology,Software
Link
https://onlinelibrary.wiley.com/doi/pdf/10.1049/joe.2018.8140
Reference13 articles.
1. Dynamic performance evaluation of 5‐dof magnetic levitation and guidance device by using equivalent magnetic circuit model;Kim C.H.;IEEE Trans. Magn.,2013
2. A novel levitation control strategy for a class of redundant actuation maglev system;Zhou H.B.;Control Eng. Pract.,2011
3. Five‐dof innovative linear maglev slider to account for pitch, tilt and load uncertainty;Kao Y.M.;Mech. Syst. Signal Process.,2017
4. Levitation mechanism modelling for maglev transportation system;Zhou H.b.;J. Central South Univ. Technol.,2010
5. Influence of lateral‐impact force on electropermanent magnet suspension conveyor with inherent guidance force;Shin H.J.;IEEE Trans. Magn.,2016
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1. MaglevMotor: Design and optimisation of a novel hybrid linear actuator for 6 degrees of freedom rail‐passive Maglev carrier;IET Electric Power Applications;2024-02-26
2. Proposal for Estimation of the Vertical Center of Gravity and the Decoupling Control with 2-DoF for a Maglev Linear Conveyor;2023 14th International Symposium on Linear Drivers for Industry Applications (LDIA);2023-06-28
3. Multifidelity Surrogate Assisted Rapid Design of Transverse-Flux Permanent Magnet Linear Synchronous Motor;IEEE Transactions on Industrial Electronics;2020-09
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