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Reactance calculation of a reactor with non-concentric windings by utilizing a finite element method (FEM) based 3-D program

机译:利用基于有限元方法(FEM)的3-D程序计算非同心绕组电抗器的电抗

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This paper describes a modern method to calculate the saturated and non-saturated reactances of quasi-linear reactors. The reactor studied is a single-phase unit with two non-concentric windings without magnetic core, but with magnetic shields and tank. This geometry requires 3-D calculations. To achieve the highest accuracy, a FEM based 3-D program with a time harmonic solver was utilized to calculate the reactive energy in the system. With the reactive energy, the reactance is calculated. Simulations were made to calculate the total and the self reactances. The mutual reactance was calculated by two means, with aid of magnetic circuit theory and by making a separate simulation. The calculated reactances were compared to the measured reactances of an actual full-size manufactured reactor. The deviation between calculated and measured reactances was negligible. Hence, the design reliability to meet the guaranteed reactance value and tolerance was significantly enhanced, thanks to the calculation method utilized.
机译:本文介绍了一种计算准线性电抗器饱和和非饱和电抗的现代方法。研究的电抗器是一个单相单元,具有两个不带磁芯的非同心绕组,但带有磁屏蔽罩和储罐。这种几何形状需要3D计算。为了获得最高的精度,利用带有时间谐波求解器的基于FEM的3-D程序来计算系统中的无功电能。利用无功能量,可以计算出电抗。进行仿真以计算总电抗和自电抗。互感通过两种方法来计算,借助磁路理论和进行单独的仿真。将计算出的电抗与实际的大型制造反应器的测得电抗进行比较。计算和测量的电抗之间的偏差可以忽略不计。因此,由于采用了计算方法,因此可以显着提高满足保证的电抗值和容差的设计可靠性。

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