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Design of a measurement system for investigating the magnetic characteristics of soft magnetic materials for non-sinusoidal periodic excitations

机译:测量用于非正弦周期激励的软磁材料的磁特性的测量系统的设计

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This article is about the design of a measurement system for measuring the iron losses in soft magnetic materials exerted by periodic flux density characteristics. The losses are due to hysteresis and eddy currents effects. The aimis to predict the iron losses which occur in electric machines. Common loss modeling techniques are derived by considering sinusoidal flux density characteristics. As nowadays highly-utilized machine designs with special winding topologies are employed, the periodic flux density characteristics in a big part of the ferromagnetic components are far off from being sinusoidal. Hence, the here presented measurement system and the associated control are especially developed for analyzing any periodic flux density characteristics. A further part of this article is dedicated to the comparison of state-of-the-art iron loss modeling techniques and measurement results. Several scenarios with different flux density harmonic magnitudes and frequencies are considered. It turns out that currently available loss modeling techniques show significant modeling errors for non-sinusoidal periodic flux density excitations. Thus, future work has to be on deriving more accurate models by considering their applicability for computer-aided engineering software.
机译:本文是关于一种测量系统的设计,该测量系统用于测量周期性磁通密度特性对软磁性材料中铁的损耗。损耗归因于磁滞和涡流效应。目的是预测电机中发生的铁损。常见的损耗建模技术是通过考虑正弦通量密度特性得出的。如今,由于采用了具有特殊绕组拓扑的高度实用的机器设计,因此,大部分铁磁组件中的周期性磁通密度特性都远离正弦波。因此,这里提出的测量系统和相关的控制系统特别为分析任何周期性的磁通密度特性而开发。本文的另一部分致力于比较最新的铁损建模技术和测量结果。考虑了具有不同磁通密度谐波幅度和频率的几种情况。事实证明,当前可用的损耗建模技术对于非正弦周期磁通密度激励显示出显着的建模误差。因此,未来的工作必须是通过考虑模型对计算机辅助工程软件的适用性来推导更精确的模型。

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