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Orthogonal decomposition of core loss along rolling and transverse directions of non-grain oriented silicon steels

机译:非晶粒取向硅钢沿轧制和横向的铁损正交分解

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摘要

Rotational core loss of the silicon steel laminations are measured under elliptical rotating excitation. The core loss decomposition model is very important in magnetic core design, in which the decomposition coefficients are calculated through the measurement data. By using the transformation of trigonometric function, the elliptical rotational magnetic flux can be decomposed into two parts along two directions. It is assumed that the rotating core loss is the sum of alternating core losses along rolling and transverse directions. The magnetic strength vector H of non-grain oriented (NGO) silicon steel 35WW270 along rolling and transverse directions is measured by a novel designed 3-D magnetic properties tester. Alternating core loss along the rolling, transverse directions and rotating core loss in the xoy-plane of this specimen in different frequencies such as 50 Hz, 100 Hz, and 200 Hz. Experimental results show that the core loss model is more accurate and useful to predict the total core loss.
机译:在椭圆形旋转激励下测量硅钢叠片的旋转铁损。磁芯损耗分解模型在磁芯设计中非常重要,该模型中的分解系数是通过测量数据来计算的。通过使用三角函数的变换,可以将椭圆形旋转磁通量沿两个方向分解为两个部分。假定旋转铁心损耗是沿滚动方向和横向方向的交替铁心损耗的总和。非晶粒取向(NGO)硅钢35WW270沿轧制方向和横向方向的磁强度矢量H由新颖设计的3-D磁性能测试仪测量。在不同的频率(例如50 Hz,100 Hz和200 Hz)下,该样本在xoy平面中沿滚动方向,横向方向和旋转核心损耗的交替核心损耗。实验结果表明,铁损模型更准确,对预测总铁损有用。

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