基于新型转子结构的开关磁阻电机优化设计

Tao Wu, Kaiyuan Fu, Maolin Cao, Zhenjiang Feng
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摘要

本文对开关磁阻电机进行了理论分析和结构优化,以改善开关磁阻电机的振动和噪声。从电机的结构入手,分析设计了一种新型转子结构的开关磁阻电机。新型转子结构通过改变电机内部的磁场分布,减少了定子铁芯和壳体的振动和变形,从而改善了电机运行时的振动和噪声。采用电磁场有限元分析方法,仿真分析表明,新型转子结构开关磁阻电机在一定程度上减小了定子与转子之间的径向磁力和转矩脉动,同时获得了更高的效率,从而全面提高了电机的性能。最后,对仿真结果进行了对比分析,得到了原型转子结构的最优参数。
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Optimized Design of Switched Reluctance Motor Based on a New Rotor Structure
In this paper, the theoretical analysis and structural optimization of switched reluctance motor are studied to improve the vibration and noise of this type of motor. Starting with the structure of the motor, a switched reluctance motor with a new rotor structure is analyzed and designed. By changing the magnetic field distribution inside the motor, the new rotor structure reduces the vibration and deformation of the stator core and the shell, thereby it can improve the vibration and noise of the motor in operation. By using the finite element analysis method of electromagnetic field, the simulation analysis shows that the radial magnetic force and torque ripple between the stator and rotor of the new type of rotor-structure switched reluctance motor can be reduced to a certain extent, and at the same time the higher efficiency can be obtained, then enhancing the performance of the motor comprehensively. Finally, the simulation results are compared and analyzed to obtain the optimal parameters of the prototype rotor structure.
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