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A general framework for the analysis and design of tubular linear permanent magnet machines

IEEE Transactions on Magnetics · 1999 · Vol. 35(3) · pp. 1986–2000
Jiabin WangG.W. JewellD. Howe

Abstract

A general framework for the analysis and design of a class of tubular linear permanent magnet machines is described. The open-circuit and armature reaction magnetic field distributions are established analytically in terms of a magnetic vector potential and cylindrical coordinate formulation, and the results are validated extensively by comparison with finite element analyses. The analytical field solutions allow the prediction of the thrust force, the winding emf, and the self- and mutual-winding inductances in closed forms. These facilitate the characterization of tubular machine topologies and provide a basis for comparative studies, design optimization, and machine dynamic modeling. Some practical issues, such as the effects of slotting and fringing, have also been accounted for and validated by measurements.

Electric Motor Design and AnalysisMagnetic Bearings and Levitation DynamicsSuperconducting Materials and ApplicationsArmature (electrical engineering)MagnetFinite element methodComputer scienceThrustTopology (electrical circuits)Magnetic circuitVector potentialMagnetic fieldMechanical engineering

Funding

  • Engineering and Physical Sciences Research Council
Citations
367
FWCI
2.33
field-weighted impact
References
23
Percentile
89%
vs. same field & year
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A general framework for the analysis and design of tubular linear permanent magnet machines · Scinovex