Conventional and HTS disc motor with pole variation control

D. Inácio, S. Inácio, J. Pina, S. Valtchev, M. Neves, J. Martins, A. Leo Rodrigues
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引用次数: 8

Abstract

In this paper, a poly-phase disc motor innovative feeding and control strategy, based on a variable poles approach, and its application to a High Temperature Superconductor (HTS) disc motor, are presented. The stator windings may be electronically commutated to implement a 2, 4, 6 or 8 poles winding, thus changing the motor's torque/speed characteristics. The motor may be a conventional induction motor with a conductive disc rotor, or a new HTS disc motor, with conventional copper windings at its two iron semi-stators and a HTS disc as a rotor. The conventional induction motor's operation principle is related with the induced electromotive forces in the conductive rotor. Its behaviour, characteristics and modelling through Steinmetz and others theories are well known. The operation principle of the motor with HTS rotor, however, is rather different and is related with vortices' dynamics and pinning characteristics; this is a much more complex process than induction, and its modelling is quite complicated. In this paper, the operation was simulated through finite-elements commercial software (FLUX2D), whereas superconductivity was simulated by the E-J power law. The Electromechanical performance of both motor's computed are compared. Considerations about the systems overall efficiency, including cryogenics, are also discussed.
磁极变化控制的传统和高温盘式电机
本文介绍了一种基于变极方法的多相盘式电机创新馈电控制策略,并将其应用于高温超导体盘式电机。定子绕组可以通过电子换向实现2、4、6或8极绕组,从而改变电机的转矩/速度特性。该电机可以是带有导电盘式转子的传统感应电机,也可以是两个铁半定子采用传统铜线圈和一个高温超导盘式转子的新型高温超导盘式电机。传统感应电动机的工作原理与导电转子中的感应电动势有关。它的行为、特征和通过斯坦梅茨和其他理论建立的模型是众所周知的。然而,高温超导转子电机的工作原理却有很大的不同,这与涡旋的动力学和钉住特性有关;这是一个比归纳法复杂得多的过程,其建模相当复杂。本文通过商业有限元软件(FLUX2D)模拟了这一过程,而超导性则通过E-J幂律进行了模拟。对两种电机的机电性能进行了计算比较。对系统整体效率的考虑,包括低温,也进行了讨论。
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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