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Design and loss analysis of a new self-decelerating PM in-wheel motor

机译:新型自减速永磁轮毂电机的设计与损耗分析

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摘要

This paper proposed a new self-decelerating PM in-wheel motor (SDPMIWM) which replaces the stationary ring of the conventional magnetic-geared motor with the stator teeth and is magnetized in Halbach Array. Unlike the traditional PM synchronous motors, the SDPMIWM operates on the harmonics. The field is full of harmonic components and the flux waveforms in the motor can be complex. All these makes calculating the motor loss difficult. Thus, this paper study the field distribution of the motor, including harmonic analysis, magnetization in key positions of stator and rotor, and end effect in the motor including its influence in motor's performances. Then, the hysteresis and eddy current loss in stator and rotor are analyzed. Furthermore, the eddy current loss in the PMs is also investigated and the potential over-heating points are specified, making contributions to motor optimization. Besides, the radial magnetized motor with the same structure as the SDPMIWM is also analyzed to verify the advantages of the Halbach Array in improving the strength of magnetic field and the quality of flux waveforms, and in reducing end effect's influence in motor's performances. © 2014 IEEE.
机译:本文提出了一种新型的自减速式PM轮毂电动机(SDPMIWM),该电动机用定子齿取代了传统磁齿轮电动机的固定环,并在Halbach阵列中进行了磁化。与传统的PM同步电动机不同,SDPMIWM在谐波上运行。磁场中充满了谐波成分,电动机中的磁通波形可能很复杂。所有这些使计算电动机损耗变得困难。因此,本文研究了电动机的场分布,包括谐波分析,定子和转子关键位置的磁化以及电动机的端效应,包括其对电动机性能的影响。然后,分析了定子和转子中的磁滞和涡流损耗。此外,还对PM中的涡流损耗进行了调查,并指定了潜在的过热点,为电机优化做出了贡献。此外,还分析了与SDPMIWM具有相同结构的径向磁化电动机,以验证Halbach阵列在提高磁场强度和磁通波形质量以及减少端效应对电动机性能的影响方面的优势。 ©2014 IEEE。

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