电机有限元分析中铁芯损耗预测的改进模型

E. Dlala, M. Solveson, S. Stanton, A. Arkkio
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引用次数: 7

摘要

本文提出了一种用于机电设备数值分析中铁芯损耗预测的改进模型。该模型基于损耗损耗的物理观测,允许滞回系数和涡流损耗系数随峰值磁通密度和频率变化。这些系数来自能量损失方程,并从通常由标准爱泼斯坦框架或单片测试提供的特定功率损失数据中提取。将该模型应用于感应电机铁芯损耗预测的二维有限元程序中,发现预测结果与实测结果之间存在密切的相关性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Improved model for the prediction of core loss in finite element analysis of electric machines
This paper presents an improved model for the prediction of core loss in numerical analysis of electromechanical devices. The model allows the coefficients of hysteresis and eddy current losses to vary with peak flux density and frequency based on physical observation of the loss dissipation. The coefficients are derived from the energy loss equation and extracted from specific power loss data typically provided by standard Epstein frame or single-sheet tests. The model was implemented in a 2-D finite-element code for the prediction of core losses in an induction motor where a close correlation between predicted and measured results was found.
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