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A Spoke-Type IPM Machine With Novel Alternate Airspace Barriers and Reduction of Unipolar Leakage Flux by Step-Staggered Rotor

机译:具有新型替代空域屏障并采用步进交错式转子减少单极漏磁通的轮辐式IPM机

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摘要

This paper proposes a spoke-type interior permanent magnet (IPM) machine with novel alternate airspace barriers, through which higher torque capability and better manufacturability can be obtained, without remarkable deterioration in mechanical strength. Further, the influence of end leakage flux in the novel IPM design is investigated by three-dimensional finite element method, including the leakage flux characteristics and torque capability. Furthermore, a step-staggered rotor is proposed to reduce the unipolar leakage flux and magnetization of the end shaft. As an extension, unipolar leakage flux is further investigated in consequent-pole PM machines, as well as the validity of step-staggered method. Finally, prototypes are fabricated and tested to verify the foregoing analyses, including the magnetic field at the end shaft and the output capability.
机译:本文提出了一种具有新型交替气隙屏障的辐条型内部永磁体(IPM)机器,通过该机器,可以获得更高的扭矩能力和更好的可制造性,而机械强度没有明显下降。此外,通过三维有限元方法研究了端漏磁通在新型IPM设计中的影响,包括漏磁通特性和扭矩能力。此外,提出了一种步进电动机,以减少单极漏磁通和端轴的磁化。作为扩展,在后续极子永磁电机中进一步研究了单极漏磁通,以及逐步交错法的有效性。最后,制造并测试原型以验证上述分析,包括端轴处的磁场和输出能力。

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