Optimization of PM-Assisted Synchronous Reluctance Motor with Asymmetric Rotor
编号:175 访问权限:公开 更新:2020-10-29 22:02:16 浏览:227次 张贴报告

报告开始:2020年11月04日 15:15(Asia/Shanghai)

报告时间:5min

所在会场:[G] Poster session [G3] Poster Session 3

摘要
The permanent magnet assisted synchronous reluctance motor (PMA-SynRM) with the asymmetric rotor design can effectively improve the utilization of magnetic torque and reluctance torque, thus to improve the torque density. However, it also brings about problems of cogging torque and excessive torque ripple. In order to solve this problem of excessive torque ripple, the torque ripple is suppressed from two aspects of the motor structure and control methods. In terms of motor structure, opening the auxiliary slot and changing the pole and slot combinations with different winding methods. In control methods, the torque ripple is suppressed by analyzing the torque harmonic components and injecting the specified harmonic current. Then, with the aid of finite element method (FEM), the influence of three methods on the torque characteristics and performance of the PMA-SynRM with asymmetric rotor structure is analyzed. The results show that the three methods can effectively suppress the torque ripple, and the 27-slot stator with distributed windings structure can effectively suppress the cogging torque and torque ripple of this kind of motor under the premise of ensuring the full use of the torque component. This work can better enhance the flux focusing characteristics of the asymmetric rotor structure, laying a foundation for the application of the asymmetric rotor PMA-SynRM in more fields.
关键词
Permanent magnet assisted synchronous reluctance motor,torque ripple,auxiliary slot,slot and pole combinations,harmonic current injection
报告人
Yan Liu
Shandong University

稿件作者
Yan Liu Shandong University
Wenliang Zhao Shandong University
Zhishuo Yang Shandong University
Xiuhe Wang Shandong University
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重要日期
  • 会议日期

    11月02日

    2020

    11月04日

    2020

  • 10月27日 2020

    初稿截稿日期

  • 11月03日 2020

    报告提交截止日期

  • 11月04日 2020

    注册截止日期

  • 11月17日 2020

    终稿截稿日期

主办单位
IEEE IAS Student Chapter of Huazhong University of Science and Technology (HUST)
承办单位
Huazhong University of Science and Technology
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