首页> 外文期刊>Acta Physica Polonica >Extension of the Jiles-Atherton Model for Modelling the Frequency Dependence of Magnetic Characteristics of Amorphous Alloy Cores for Inductive Components of Electronic Devices
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Extension of the Jiles-Atherton Model for Modelling the Frequency Dependence of Magnetic Characteristics of Amorphous Alloy Cores for Inductive Components of Electronic Devices

机译:Jiles-Atherton模型的扩展,用于建模电子设备电感组件的非晶合金芯磁特性的频率依赖性

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The paper presents the results of modelling the influence of magnetizing field frequency on the magnetic characteristics of Fe_(40)Ni_(38)Mo_4B_(18) amorphous alloy in as-quenched state. An extension for the Jiles-Atherton model was applied and changes of the parameter k during the magnetization process were considered. On the base of the experiment, the parameters of the Jiles-Atherton model were calculated for experimental hysteresis loop. Evolutionary strategies, together with the gradient optimisation method, were used. Moreover, the changes of parameters c and a as the function of frequency of magnetizing field were also taken into consideration. Finally, the high conformity between the experimental and modelling results was achieved. This high conformity indicates that the results both create new possibilities in modelling of properties of inductive components based on the amorphous alloys, as well as extend the possibility of quantitative description of magnetization process.
机译:本文给出了在淬火状态下对励磁频率对Fe_(40)Ni_(38)Mo_4B_(18)非晶态合金磁性能的影响进行建模的结果。应用了Jiles-Atherton模型的扩展,并考虑了磁化过程中参数k的变化。在实验的基础上,计算了实验磁滞回线的Jiles-Atherton模型参数。使用了进化策略,以及梯度优化方法。此外,还考虑了参数c和a随磁化场频率变化的变化。最后,实现了实验结果与建模结果之间的高度一致性。这种高度的一致性表明结果不仅为基于非晶态合金的电感组件的性能建模提供了新的可能性,而且扩展了磁化过程定量描述的可能性。

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