High-Speed Synchronous Reluctance Motors: Computation of the Power Limits by Means of Reluctance Networks

Cristian Babetto, N. Bianchi, C. Lopez, Antoni García, L. Romeral
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引用次数: 2

Abstract

The aim of this paper is to describe the torque and power behavior of synchronous reluctance motors for high-speed applications. The design of such motors is the result of a trade-off between magnetic and mechanical aspects. In fact, the radial ribs have to be properly design limiting the quadrature flux axis and the mechanical stresses due to centrifugal forces. The rotor geometry resulting from such compromise determines an unusual flux density distribution that cannot be accurately described wih simple analytical models based on restrictive hypothesis. For this reason, a nonlinear reluctance network is proposed to consider the saturation of both rotor and stator. The results of this approach are confirmed by finite element analysis.
高速同步磁阻电动机:用磁阻网络计算功率极限
本文的目的是描述高速应用的同步磁阻电动机的转矩和功率特性。这种电机的设计是在磁性和机械方面进行权衡的结果。实际上,必须合理设计径向肋,以限制正交磁通轴和离心力引起的机械应力。这种妥协导致的转子几何形状决定了一种不寻常的磁通密度分布,这种分布不能用基于限制性假设的简单分析模型来准确描述。为此,提出了一种同时考虑转子和定子饱和的非线性磁阻网络。有限元分析结果证实了该方法的有效性。
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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