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Determination of electromagnetic properties of steel for prediction of stray losses in power transformers

机译:确定钢的电磁特性以预测电力变压器中的杂散损耗

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This paper introduces a method for determination of equivalent linear electromagnetic parameters (constant complex permeability and electrical conductivity) of nonlinear magnetic steel, which can be used in a time-harmonic finite-element simulation to yield the same losses in the volume of that material as the measured ones. The conductivity and the static hysteresis loop of the steel have been measured, from which complex permeability as a function of flux density has been extracted. The indirect measurement of losses in various samples of nonmagnetic and magnetic steel has been carried out using a physical model of a transformer core with a coil. The 3D model of the core has been made with finite-element software and combining it with evolutionary optimization the equivalent constant complex permeability and conductivity of each sample have been found, which yield the equality of measured and calculated losses in the sample. Thus, calculated equivalent material parameters have been implemented in 3 finite-element models of transformers of various power ratings in order to determine the share of hysteresis losses in the total amount of losses in structural parts of transformers. The results have been compared with the measurement and the reasons for discrepancies have been explained.
机译:本文介绍了一种确定非线性电磁钢的等效线性电磁参数(恒定复磁导率和电导率)的方法,该方法可用于时谐有限元模拟中,以产生与材料相同的体积损耗。测量的。测量了钢的电导率和静态磁滞回线,从中提取了作为磁通密度函数的复磁导率。已经使用带有线圈的变压器铁心的物理模型对非磁性和电磁钢的各种样品中的损耗进行了间接测量。用有限元软件制作了岩心的3D模型,并将其与演化优化相结合,得出了每个样品的等效常数复磁导率和电导率,从而得到了样品中测量和计算的损耗相等。因此,已计算出的等效材料参数已在各种额定功率的变压器的3个有限元模型中实现,以便确定磁滞损耗在变压器结构部件的损耗总量中所占的份额。将结果与测量结果进行了比较,并解释了差异的原因。

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