Abstract
Surface permanent magnet-type vernier motors with three magnet array-type rotors (parallel magnetized type, repulsion type, and Halbach type) are compared based on the pull-out torque. It was clarified that increasing the rotor radius increases the pull-out torque at a fixed three-phase alternating voltage. The mechanism for the pull-out torque increase on each magnet array type was different, when the effects of the increase were analyzed based on an induced electromotive force and a synchronous reactance. As a result, the design of the Halbach-type rotor was found to be especially effective for achieving high pull-out torque, because this array type achieves a large induced electromotive force E0 and a small synchronous reactance xs. © 2012 IEEJ Industry Appl Soc.
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Kataoka, Y., Takayama, M., Matsushima, Y., & Anazawa, Y. (2012). Comparison of three magnet array-type rotors in surface permanent magnet-type vernier motor. In ICEMS 2012 - Proceedings: 15th International Conference on Electrical Machines and Systems. https://doi.org/10.11142/jicems.2013.2.1.1
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