Simulation of an axial-flux induction machine with squirrel cage based on the winding function theory

J. Igelspacher, Q. Hecker, H. Herzog
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引用次数: 4

Abstract

In this paper a method for simulating an axial-flux induction machine with squirrel cage is presented. The Simulation is based on the multiple coupled circuit theory wherein the needed inductances are calculated with the winding function theory. This simulation model is the basis for fault simulations like short circuits. First, the principle arrangement and the machine data are shown. After a short introduction to the winding function and multiple circuit theory the calculation of the self- and mutual- inductances based on its Fourier series is explained. Moreover the difference between using a rectangular and a trapezoidal characteristic of the winding function is described. Especially for this type of machine the needed assumptions and simplifications are presented as well. In a next step the simulation model implemented in Matlab/Simulink is presented. The paper ends with some simulation results compared to the machine data and a short conclusion.
基于绕组函数理论的鼠笼式轴向磁通感应电机仿真
本文提出了一种鼠笼式轴向磁通感应电机的仿真方法。该仿真基于多重耦合电路理论,其中所需电感由绕组函数理论计算。该仿真模型是短路等故障仿真的基础。首先给出了原理布置和整机数据。在简要介绍绕组函数和多电路理论的基础上,阐述了基于其傅立叶级数的自电感和互感的计算方法。此外,还描述了使用矩形和梯形绕组函数特性的区别。特别是对于这种类型的机器,还提出了必要的假设和简化。然后给出了在Matlab/Simulink中实现的仿真模型。文章最后给出了一些与实际数据对比的仿真结果和简短的结论。
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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