Method of Current Compensation for Reducing Error of Holding Torque of Permanent-Magnet Spherical Wheel Motor

  • Kang, Dong-Woo
  • Kim, Won-Ho
  • Go, Sung-Chul
  • Jin, Chang-Sung
  • Won, Sung-Hong
  • ... Lee, Ju
  • 외 1명
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초록

A permanent magnet spherical wheel motor, which consists of magnets on rotor and coils on spherical stator, is able to operate on 3-D space as using magnetic alignment torque generated from between coils and magnets. Especially the shaft can be tilted stably by optimized coil position on stator. Because, however, the spherical wheel motor has feature of 3-D structure as relative position between coils and magnets, stable holding torque for rotor position should be analyzed as function of the tilt degree of a shaft. The characteristic of stable holding torque can be changed nonlinearly by the alpha and beta degrees of a shaft. Therefore, when reference current is commanded at coils, the shaft cannot be tilted to the reference position exactly for the nonlinear characteristic. In this paper, for improving the nonlinear phenomenon of holding torque, the authors research and improve a current compensation function to increase stable operating range. Also, the compensation function was estimated by using torque ripple computed from torque simulation.

키워드

Current compensationcurve fitting methodpermanent magnets electric machinesspherical wheel motorCurve fittingError compensationPermanent magnetsSpheresStatorsWheelsTorqueCompensation functionsCurrent compensationCurve fitting methodsNon-linear phenomenaNonlinear characteristicsReference currentsRelative positionsSpherical wheel motors
제목
Method of Current Compensation for Reducing Error of Holding Torque of Permanent-Magnet Spherical Wheel Motor
저자
Kang, Dong-WooKim, Won-HoGo, Sung-ChulJin, Chang-SungWon, Sung-HongKoo, Dae-HyunLee, Ju
DOI
10.1109/TMAG.2009.2018676
발행일
2009-06
유형
Article; Proceedings Paper
저널명
IEEE Transactions on Magnetics
45
6
페이지
2819 ~ 2822