两相高速开关磁阻电机转子优化设计

Yingjie He, Ying Tang, Haotian Xie, Dongliang Ke, Fengxiang Wang
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引用次数: 0

摘要

本文对高速用两相开关磁阻电动机的转子结构进行了优化设计。相邻的两个凸极转子之间的凹段用非磁性材料填充,形成圆柱形,通过减少气穴内部的漩涡而不引入电磁方面的影响来减少高速运行时的风损。此外,本文用三维计算流体力学(CFD)结果来代替近似的数学计算来解释改进后的转子结构的优点。最后,通过交流/直流整流器驱动运行速度高达30000 r/min的原型电机,验证了整个系统的可行性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Rotor Optimization for Two-phase High-speed Switched Reluctance Motor
The rotor structure of a 2-phase switched reluctance motor (SRM) for high-speed application is optimized in this paper. The concave sections between the two adjacent salient rotor poles are padded with non-magnetic material to form a cylindrical shape for the reduction of the windage loss at high-speed operation by reducing the whirlpool inside the air pocket without introducing effect on electromagnetic aspect. Furthermore, instead of the approximated mathematical calculation, the three-dimensional computational fluid dynamics (CFD) results are explicitly demonstrated to explain the advantage of the modified rotor structure. Finally, a prototype motor running up to 30000 r/min is driven by an AC/DC rectifier to verify the feasibility of the whole system.
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