12/8双定子无轴承开关磁阻电动机的特性分析与比较

Zhenyao Xu, Zhu-bao Zhou, Zhijun Fan, Yue Qi, Feng Zhang
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引用次数: 1

摘要

提出了一种新型分段转子型12/8双定子无轴承开关磁阻电动机。提出的DSBSRM包括六个部分:外定子、转子、内定子、轴、转矩和悬浮力绕组。虽然所提出的DSBSRM的外定子和内定子的功能与传统的12/8 DSBSRM相同,但与传统的12/8 DSBSRM不同的是,所提出的DSBSRM的外定子有两种定子极:励磁和辅助极。此外,所提出的DSBSRM转子不具有任何机械显著性,由转子段、非磁隔离器和环形铁芯组成。转子段和环形磁芯分别嵌入在非磁隔离器的外部和内部。由于结构的特殊性,所提出的DSBSRM工作在短磁通径中,并且转矩绕组和悬浮力绕组产生的磁通相互独立。因此,与传统的12/8 DSBSRM相比,所提出的DSBSRM不仅提高了输出转矩密度,而且在转矩与悬力控制之间具有更好的解耦特性。为了验证所提出的结构,采用有限元法得到了所提出的DSBSRM的特性。同时,还对传统的12/8 DSBSRM进行了分析比较。最后,通过仿真结果验证了所提结构的有效性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Characteristics Analysis and Comparison of Conventional and Segmental Rotor Type 12/8 Double Stator Bearingless Switched Reluctance Motors
A novel segmental rotor type 12/8 double stator bearingless switched reluctance motor (DSBSRM) is proposed in this paper. The proposed DSBSRM includes six parts: outer stator, rotor, inner stator, shaft, torque and suspending force windings. Although the function of outer and inner stators of the proposed DSBSRM is the same as that of conventional 12/8 DSBSRM, unlike conventional 12/8 DSBSRM, the outer stator of the proposed DSBSRM has two types of stator poles: exciting and auxiliary poles. Moreover, the rotor of the proposed DSBSRM does not have any mechanical saliency, and it is composed of rotor segments, nonmagnetic isolator and toroidal core. The rotor segments and toroidal core are embedded in the outside and inside of the nonmagnetic isolator, respectively. Due to particularity of the structure, the proposed DSBSRM operates in short flux paths, and fluxes produced from the torque and suspending force windings are independent from each other. Therefore, compared with conventional 12/8 DSBSRM, the proposed DSBSRM not only improves the output torque density, but also has better decoupling characteristics between torque and suspending force control. To verify the proposed structure, finite element method (FEM) is employed to get the characteristics of the proposed DSBSRM. Meanwhile, a conventional 12/8 DSBSRM is also analyzed for comparison. Finally, the validity of proposed structure is verified by simulation results.
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