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Design and Analysis of a High-Speed Dual Stator Slotted Solid-Rotor Axial-Flux Induction Motor

机译:高速双定子开槽固体转子轴向磁通感应电动机的设计与分析

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摘要

Compared with a smooth solid rotor, the slotted solid rotor in a high-speed dual stator slotted solid-rotor axial-flux induction motor (SSRAIM) improves the performance. To summarize the influence of slots on performances by 2-D finite-element method (FEM), a multislice method is applied, which simplify the 3-D electromagnetic field distribution (EFD) in SSRAIM into the 2-D EFD in a finite set of double primary slotted steel secondary linear induction motors. Also, based on the multilayer method and the surface impedance theory, an improved equivalent-circuit model (IECM) is derived, which considers the coupling relationship between the upper and lower stator windings and the nonlinear permeability of slotted solid rotor. The performances of a 5-kW, 7300-r/min prototype are analyzed by the IECM, the FEM, and the experimental test. The comparisons show that the accuracy of the IECM is satisfactory.
机译:与光滑的固体转子相比,高速双定子开槽固体转子轴向磁通感应电机(SSRAIM)中的开槽固体转子可提高性能。为了总结时隙对2-D有限元方法(FEM)进行性能的影响,应用了多层方法,将SSRAIM中的3-D电磁场分布(EFD)简化到有限组中的2-D EFD双初级开槽钢二次线性感应电动机。而且,基于多层方法和表面阻抗理论,推导出改进的等效电路模型(IECM),其认为上定子绕组和下部定子绕组之间的耦合关系和开槽固体转子的非线性渗透性。通过IECM,FEM和实验测试分析5-kW,7300 r / min原型的性能。比较表明,IECM的准确性是令人满意的。

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