Preliminary Analysis of Core Losses and Performance of an Axial Flux Motor with High Temperature Superconducting Tapes on the Rotor

J. Pinto, Fabio Gregorio, R. Oliveira, X. Granados, A. Álvarez, J. Murta-Pina
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引用次数: 1

Abstract

This work presents a novel electric motor with a rotor built by high-temperature superconducting (HTS) tapes. The motor is of axial flux (disc) type, in a double stator topology integrating conventional (copper) coils. The motor has as many coils as slots in the stator, and each is controlled independently. Due to this topology, the number of poles of the stator can be electronically changed, by adjusting the phase shifts of the voltages in each coil of the stator. A commutator was thus developed to vary the configuration of the poles of the motor and to evaluate its performance. Since HTS materials trap magnetic flux, one of the research questions of the work is to assess the viability of dynamically changing the poles configuration trapped in the rotor, i.e., under operation. The obtained results show that the HTS motor can have its polar formation reconfigured during operation without the need for the HTS material to transition to the normal state, losing superconductivity and the flux trapping ability. Experimental and numerical simulation results are presented in the paper, to demonstrate the viability of the proposed concept. Experimental tests allowed measuring electromagnetic quantities and collecting motor operating data in different configurations of poles. The stator losses were calculated in two different configurations using the finite element method.
转子高温超导带轴向磁通电机铁芯损耗及性能初步分析
本文提出了一种新型的以高温超导(HTS)带为转子的电动机。该电机为轴向磁通(圆盘)型,采用双定子拓扑结构,集成传统(铜)线圈。电机定子上的线圈和槽一样多,每个线圈都是独立控制的。由于这种拓扑结构,定子的极数可以通过电子方式改变,通过调整定子每个线圈中电压的相移。因此,开发了一种换向器来改变电机极的配置并评估其性能。由于高温超导材料捕获磁通量,因此工作的研究问题之一是评估动态改变转子中捕获的磁极结构的可行性,即在运行状态下。研究结果表明,高温超导电机在运行过程中可以实现极性结构的重新配置,而不需要高温超导材料过渡到正常状态,失去超导性和磁通捕获能力。本文给出了实验和数值模拟结果,以证明所提概念的可行性。实验测试可以测量电磁量并收集不同配置的磁极下的电机运行数据。采用有限元法计算了两种不同结构下的定子损耗。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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