Optimal Design of High-speed Solid Rotor Cage Induction Motors Considering Ferromagnetic Materials Behavior and Manufacturing Process

Haisen Zhao, Chengyang Chu, H. Eldeeb, Y. Zhan, Guorui Xu, O. Mohammed
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引用次数: 6

Abstract

Several high performance industries (i.e. natural gas compression) require high-speed motors. Solid rotor cage induction motors (SRCIMs) are perfect nominees to such applications, owing to their high reliability. However, the restrictions over ferromagnetic materials and manufacturing process overwhelm the SRCIM design. The motor is required to have low power losses in stator core and the solid rotor. Furthermore, low number of rotor slots is demanded in order to facilitate welding process in rotor side. Those two objectives are contradicting in design stage. This study investigates the losses characteristics of high-speed SRCIM considering the behavior of different ferromagnetic materials, and the complexity of welding process of solid rotors. With a 160-kW and 3000-kW SRCIMs, the influences of stator ferromagnetic material, rotor conductivity, slot combination and air-gap length on power loss characteristics are comprehensively analyzed. Based on the aforementioned analysis, an optimal design criterion for SRCIM is proposed to decline the eddy current losses and decrease the complexity of welding process in the SRCIM's rotor. To verify this criterion, a 160-kW SRCIM prototype is designed and manufactured. Experimental validation is performed and the effectiveness of the proposed design procedure is verified.
考虑铁磁材料性能和制造工艺的高速固体转子笼型异步电动机优化设计
一些高性能行业(如天然气压缩)需要高速电机。由于其高可靠性,固体转子笼型感应电动机(srcim)是此类应用的完美提名人。然而,对铁磁材料和制造工艺的限制压倒了SRCIM的设计。电机要求在定子铁芯和实心转子中具有低功率损耗。此外,为了便于转子侧的焊接,要求转子槽数少。这两个目标在设计阶段是相互矛盾的。考虑不同铁磁材料的性能,以及固体转子焊接工艺的复杂性,研究了高速SRCIM的损耗特性。以160kw和3000kw的srcim为例,综合分析了定子铁磁材料、转子电导率、槽组合、气隙长度对功率损耗特性的影响。在此基础上,提出了SRCIM的优化设计准则,以降低SRCIM转子的涡流损耗和焊接过程的复杂性。为了验证这一标准,设计并制造了一台160千瓦SRCIM样机。实验验证了所提设计程序的有效性。
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