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Magnet asymmetry in reduction of cogging torque for integer slot axial flux permanent magnet motors

机译:减少磁槽不对称转矩的整数槽轴向磁通永磁电动机

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摘要

Cogging torque component is one of the key issues in the design of radial and axial gap permanent magnet motors and the geometry and the position of the magnets plays a critical role in this process. This study presents the influence of magnet asymmetry in minimisation of the cogging torque for axial flux permanent magnet (AFPM) disc motors. Cogging torque minimisation techniques, such as magnet skewing and magnet shifting or groping are examined in detail by using threedimensional finite element analysis with various types of magnet skewing alternatives since the shaping and the positioning magnets are low cost approaches to minimise or eliminate the cogging component. A prototype AFPM disc motor is built with shifted magnets based on the models which are the results validated with the experimental results for the minimum cogging component and the sinusoidal back-EMF waveform. It is shown in this study that the cogging component in AFPM motors can be practically eliminated by using magnet asymmetry and perfectly sinusoidal back-EMF can also be obtained even for integer slot/pole/phase motors.
机译:齿槽转矩分量是径向和轴向间隙永磁电机设计中的关键问题之一,磁体的几何形状和位置在此过程中起着至关重要的作用。这项研究提出了磁极不对称对最小化轴向磁通永磁(AFPM)盘式电动机的齿槽转矩的影响。通过使用三维有限元分析以及各种类型的磁体偏斜替代方案,详细研究了齿槽转矩最小化技术(例如磁体偏斜和磁体偏移或摸索),因为成形和定位磁体是降低或消除齿槽成分的低成本方法。 AFPM圆盘电动机原型是根据模型制造的,带有位移磁体,这些结果已通过最小齿槽效应分量和正弦反电动势波形的实验结果进行了验证。在这项研究中表明,通过使用磁体不对称性,AFPM电动机中的齿槽效应几乎可以消除,即使对于整数槽/极/相电动机,也可以获得完美的正弦反电动势。

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  • 来源
    《Electric Power Applications, IET》 |2014年第5期|189-198|共10页
  • 作者

    Gulec M.; Aydin M.;

  • 作者单位

    Department of Mechatronics Engineering, Kocaeli University, Umuttepe Campus, Kocaeli 41380, Turkey|c|;

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  • 正文语种 eng
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