减轭轴磁通耦合感应电机的解析检验

J. Igelspacher, Sonja Fluegel, H. Herzog
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引用次数: 5

摘要

本文提出了一种描述由鼠笼式单定子轴磁通感应电机组成的两个局部电机堆的解析方法。首先,讨论了轴向磁通感应电机的主要设计可能性。然后,解释了通过减小转子轭架而将它们排列成一堆时的变化,并给出了对磁通量的影响。作为下一步,从电流片理论推导出系统方程,其中电流片和所有部分机器的磁通密度计算,取决于转子轭的减少量。并给出了自感和互感的方程。最后,通过一些仿真结果描述了对运行性能的影响。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Analytic examination of coupled axial-flux induction machines with reduced yoke
This paper presents an analytical method for describing a stack of two partial machines built out of single-stator axial-flux induction machines with squirrel cage. First, the principal design possibilities for axial-flux induction machines are discussed. Afterwards, the variations when arranging them in a stack by reducing the rotor yoke are explained and the consequence for the magnetic fluxes are shown. As a next step, the system equations are deduced from the current sheet theory, where the current sheets and the magnetic flux densities of all partial machines are calculated, depending on the amount of the rotor yoke reduction. Also the equations of the self and mutual-inductances are presented. At last, the influence on the operating behavior is described and shown by some simulations results.
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