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Rotor Design Optimization of a New Flux-Assisted Consequent Pole Spoke-Type Permanent Magnet Torque Motor for Low-Speed Applications

机译:用于低速应用的新型磁通辅助磁极辐条式永磁转矩电动机的转子设计优化

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摘要

A new flux-assisted consequent pole spoke-type permanent magnet (PM) synchronous torque motor is proposed in this paper. The proposed motor has fractional slot structure with a spoke-type rotor geometry and flux-assisted magnets. Initial design, rotor design optimization, detailed 2-D and 3-D finite-element analyses (FEAs), and structural and thermal simulations are all carried out. A prototype motor is built and tested. The optimized design is validated by 2-D/3-D FEA and experiments and compared with the reference conventional surface PM (SPM)-type torque motor. The results indicate that the proposed new motor has higher torque-to-magnet-weight ratio and wider constant power region than the conventional SPM synchronous torque motor.
机译:提出了一种新型的磁通辅助结果极轮辐式永磁同步转矩电动机。所提出的电动机具有分数槽结构,该结构具有辐条型转子几何形状和磁通辅助磁体。最初的设计,转子的设计优化,详细的2D和3D有限元分析(FEA)以及结构和热仿真都已进行。制造并测试了原型电机。通过2-D / 3-D FEA和实验验证了优化设计,并将其与参考常规表面PM(SPM)型扭矩电动机进行了比较。结果表明,与传统的SPM同步转矩电动机相比,该新型电动机具有更高的转矩磁重比和更宽的恒定功率范围。

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