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Performance Calculation of a Dual Stator Solid Rotor Axial Flux Induction Motor Using the Multi-Slice and Multi-Layer Method

机译:基于多层和多层方法的双定子实心转子轴向感应电动机性能计算

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摘要

This paper proposes a novel dual stator solid rotor axial flux induction motor (DSSRAFIM) for a low-cost flywheel energy storage system. To simplify the analysis of its 3-D electromagnetic field distribution (EFD), a novel multi-slice and multi-layer method is applied. By this analytical method, DSSRAFIM is equivalent to a finite set of double primary steel secondary linear induction motors (DSSLIMs), and the steel secondary in each DSSLIM is divided into a finite set of layers with equal height. The EFD in each layer is obtained by solving Maxwell's equations. The EFD calculated by this novel analytical method is in good agreement with those analyzed by the finite-element method (FEM). Compared with the FEM, this novel analytical method is time saving, resulting in that it is suitable for the optimized design. According to the EFD in DSSRAFIM, an equivalent circuit model (ECM) of DSSRAFIM is derived, which is an effective approach to predict the performance. The electromagnetic torque, efficiency, and power factor of a 5 kW, 7100 r/min prototype calculated by the ECM, FEM, and experimental test verify the validity of the ECM.
机译:本文提出了一种用于低成本飞轮储能系统的新型双定子实心转子轴向磁通感应电动机(DSSRAFIM)。为了简化对其3-D电磁场分布(EFD)的分析,应用了一种新颖的多层和多层方法。通过这种分析方法,DSSRAFIM等效于有限的一组双初级钢制二次线性感应电动机(DSSLIM),并且每个DSSLIM中的钢制次级被划分为一组具有相等高度的有限层。通过求解麦克斯韦方程,可以得到每一层的EFD。通过这种新颖的分析方法计算出的EFD与通过有限元方法(FEM)分析的EFD具有良好的一致性。与FEM相比,这种新颖的分析方法节省了时间,因此适用于优化设计。根据DSSRAFIM中的EFD,推导了DSSRAFIM的等效电路模型(ECM),这是一种预测性能的有效方法。通过ECM,FEM和实验测试计算出的5 kW,7100 r / min原型的电磁转矩,效率和功率因数证明了ECM的有效性。

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