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Finite element modeling of an electrically variable inductor

机译:电可变电感器的有限元建模

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A new type of electrically variable inductor has been investigated. This uses an AC excitation field with an orthogonal DC bias field to control the properties of the device. Measurements showed that the effective inductance can be decreased by increasing the orthogonal DC bias field. With an appropriate current in the orthogonal bias coils, an inductance plateau can be reached in which the inductance remains stable over a range of excitation currents. The inductance value can be adjusted by controlling the orthogonal current. Based on an existing anhysteretic magnetization model, nonlinear 3D finite element modeling was successfully used to model the distribution of flux density and to identify the region of saturation which is believed to result in the decrease in effective inductance of the inductor. The effective inductance of the device was also modeled using numerical finite element calculations. The modeled inductance showed broad agreement with experimental results and predicted the observed trend in inductance.
机译:已经研究了一种新型的电可变电感器。这使用具有正交DC偏置场的AC激励场来控制设备的属性。测量表明,可以通过增加正交直流偏置磁场来降低有效电感。通过在正交偏置线圈中使用适当的电流,可以达到电感平稳段,在该平稳段中,电感在激励电流范围内保持稳定。可以通过控制正交电流来调整电感值。基于现有的磁滞磁化模型,成功地使用了非线性3D有限元建模来对通量密度的分布进行建模并确定饱和区域,这被认为会导致电感器有效电感的减小。器件的有效电感也使用数值有限元计算来建模。建模的电感显示出与实验结果大致一致,并预测了观察到的电感趋势。

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