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Error analysis of high frequency core loss measurement for low-permeability low-loss magnetic cores

机译:低磁导率低损耗磁芯高频铁损测量误差分析

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Magnetic components significantly contribute to the dissipated loss in power electronic converters. Measuring the true value of dissipated power in these components is highly desirable, since it can be used to verify the optimum design of these components. The common approach for measuring the loss in magnetic cores is B-H loop measurement where two windings are placed on the core under test. However, this method is highly vulnerable to phase shift error, especially for low-permeability, low-loss cores. Due to soft saturation and very low core loss, low-permeability low-loss magnetic cores are favorable in many of the high-efficiency high power-density power converters. Magnetic powder cores, among the low-permeability low-loss cores, are very attractive since they possess lower magnetic losses in compared to gapped ferrites. This paper presents an analytical study of the phase shift error in the core loss measuring of low-permeability, low-loss magnetic cores. Furthermore, the susceptibility of this measurement approach has been analytically investigated under different excitations. It has been shown that this method, under square-wave excitation, is more accurate compared to sinusoidal excitation. The analysis has been validated by experimental measurements for relatively low-loss magnetic cores with different permeability values.
机译:磁性元件极大地影响了功率电子转换器的耗散损耗。非常需要测量这些组件中的耗散功率的真值,因为它可以用来验证这些组件的最佳设计。测量磁芯损耗的常用方法是B-H环路测量,其中在被测铁芯上放置两个绕组。但是,这种方法极易受到相移误差的影响,特别是对于低磁导率,低损耗的磁芯。由于软饱和和极低的磁芯损耗,在许多高效的高功率密度功率转换器中,低磁导率低损耗磁芯是有利的。在低磁导率低损耗磁芯中,磁粉磁芯非常吸引人,因为与带隙铁氧体相比,磁粉芯具有较低的磁损耗。本文对低磁导率,低损耗磁芯的磁芯损耗测量中的相移误差进行了分析研究。此外,已经在不同的激励下对这种测量方法的敏感性进行了分析研究。结果表明,与正弦激励相比,这种方法在方波激励下更为精确。对于具有不同磁导率值的相对低损耗的磁芯,通过实验测量已经验证了该分析。

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