轴向磁通永磁电机设计与最佳磁体形状恒定功率区域的能力

A. Rojas, J. Tapia, M. Valenzuela
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引用次数: 5

摘要

与径向磁通机不同,开槽轴向磁通机具有特定的气隙磁通分布,这是机器直径的函数。由于矩形槽的几何形状,定子齿呈梯形几何形状,齿宽较小,靠近轴,随着直径的增大而增大。如果使用恒定磁通源(如矩形永磁)对机器进行磁化,则会导致气隙磁通分布不均匀。因此,定子齿上的磁通密度变得不规则,电感参数是定子直径的函数,并且显着性根据机器负载而变化。所有这些影响都会降低机器在低负荷和额定负荷下的功率能力。本文提出了一种新型的切向磁化轴向磁通永磁电机。考虑了定子齿的几何形状及其对机械凸度比的影响,进行了分析和数值研究。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Axial flux PM machine design with optimum magnet shape for constant power region capability
Unlike radial flux machines, slotted axial flux machine has a particular airgap flux distribution which is a function of the machine diameter. Due to the rectangular slot geometry, stator teeth present a trapezoidal geometry with small tooth width close to the shaft, increasing as the diameter becomes larger. This fact introduces an uneven airgap flux distribution if a constant flux source, such as rectangular PM, is utilized to magnetize the machine. As a result, flux density over the stator tooth becomes irregular, inductance parameters are a function of the stator diameter and saliency varies according to machine load. All these effects degrade machine power capability for low and rated load. In this paper, a novel axial flux PM machine with tangential magnetization is presented. An analytic and numerical study is carried out to consider stator tooth geometry and its effect over machine saliency ratio.
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