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A Field-Extrema Hysteresis Loss Model for High-Frequency Ferrimagnetic Materials

机译:高频亚铁磁性材料的场-极点磁滞损耗模型

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We present a new field-extrema hysteresis loss model (FHM) for high-frequency ferrimagnetic materials, along with a parameter identification procedure. The model does not involve solving an ordinary differential equation (ODE) and is asymmetric in that it works well under dc bias conditions. In the proposed model, the loss calculations are based on the extrema values of the fields. The model includes the effects of magnetic saturation as well as frequency effects. The model is comparable in accuracy to the ODE-based Jiles–Atherton model, but retains the convenience and computational efficiency of an empirical model. We demonstrate a procedure to characterize the model parameters using the Jiles–Atherton model. We compare magnetic hysteresis loss calculated by our new model with a full time-domain solution, as well as an empirical model, for a sample high-frequency ferrite. We demonstrate the use of the model, and validate the model, by calculating magnetic loss in an EI core inductor operating as the filter inductor in a buck converter. The model and identification procedure are being endorsed as a useful framework for computing magnetic loss in the context of automated magnetic device design.
机译:我们提出了一种用于高频亚铁磁性材料的新的场-极点磁滞损耗模型(FHM),以及一个参数识别程序。该模型不涉及求解常微分方程(ODE),并且不对称,因为它在直流偏置条件下效果很好。在所提出的模型中,损耗计算基于场的极值。该模型包括磁饱和效应和频率效应。该模型的准确性可与基于ODE的Jiles-Atherton模型相媲美,但保留了经验模型的便利性和计算效率。我们演示了使用Jiles-Atherton模型表征模型参数的过程。我们将通过我们的新模型计算出的磁滞损耗与一个完整的时域解决方案以及一个经验模型进行了比较,该样品为高频铁氧体样品。我们通过计算作为降压转换器中的滤波电感器的EI磁芯电感器中的磁损耗来演示该模型的使用并验证该模型。该模型和识别过程已被认可为在自动磁性设备设计中用于计算磁损耗的有用框架。

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