Three-Dimensional Modeling of Permanents Magnets Synchronous Machines Using a 3D Reluctance Network

A. A. Diriye, Y. Amara, G. Barakat
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引用次数: 7

Abstract

For electromagnetic actuators whose magnetic fields are three-dimensional, the use of the 3D finite element (FE) method is required. On the other hand, 3D FE analysis is expensive in computation time, especially for high power machines involving potentially high numbers of nodes. In this paper, a 3D reluctance network (RN) modeling approach is proposed for the pre-design of permanents magnets synchronous machines (PMSM). The RN model developed is used to model three types of electrical machines (linear machine, radial field rotating machine and axial field rotating machine). Our goal is to establish lightweight models for the pre-design of electrical machines. The performances (local and global quantities) of these machines are evaluated using this 3D RN modeling. The results obtained from this approach are validated by comparison with results issued from the 3D FE analyses.
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基于三维磁阻网络的永磁同步电机三维建模
对于磁场为三维的电磁执行器,需要采用三维有限元法。另一方面,3D有限元分析在计算时间上是昂贵的,特别是对于涉及潜在大量节点的高性能机器。提出了一种用于永磁同步电机预设计的三维磁阻网络(RN)建模方法。所建立的RN模型用于对三种类型的电机(直线电机、径向场旋转电机和轴向场旋转电机)进行建模。我们的目标是为电机的预先设计建立轻量级模型。这些机器的性能(局部和全局数量)使用这种3D RN建模进行评估。通过与三维有限元分析结果的比较,验证了该方法的有效性。
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