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Advanced model of laminated magnetic cores for two-dimensional field analysis

机译:用于二维场分析的叠片式磁芯的高级模型

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摘要

A numerical model for the analysis of laminated ferromagnetic cores of electromechanical devices is presented. The model is based on the finite-element solution of the two-dimensional (2-D) electromagnetic field problem in the lamination plane; a dynamical relation between local magnetic flux density and magnetic field strength is obtained by solving for the one-dimensional (1-D) eddy-current field developed in the lamination depth. The hysteresis of the magnetic material is accounted for by the Preisach approach. The model is first validated by comparison with an alternative held formulation available for axis-symmetric structures; finally, an application to a more complex 2-D laminated core is presented and the numerical results are confirmed by comparison with measured waveforms of electrical and magnetic quantities.
机译:提出了一种用于分析机电设备的叠层铁磁芯的数值模型。该模型基于层压平面中二维(2-D)电磁场问题的有限元解;通过求解在叠层深度中产生的一维(1-D)涡流场,获得了局部磁通密度与磁场强度之间的动力学关系。磁性材料的磁滞是通过Preisach方法解决的。首先通过与可用于轴对称结构的替代保持公式进行比较来验证该模型;最后,提出了在更复杂的二维叠片铁心中的应用,并通过与测得的电和磁量波形进行比较来证实数值结果。

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