饱和直流电抗器故障限流器的设计与研究

M. B. Bannae Sharifian, M. Abapour, E. Babaei
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引用次数: 6

摘要

由于电感器的磁芯很容易饱和,并且由于饱和而吸收额外的能量,因此大多数电感器都设计有空芯。电感器需要很多导线才能产生大的电感,而这些昂贵的线圈是直流电抗器故障限流器的弱点之一。为了解决这一问题,引入了反磁化偏置法。本文研究了一种采用直流偏置饱和铁心的故障限流器。所有励磁饱和铁芯均为交流型。所提出的FCL是直流电抗器类型,其中所有的绕组都携带直流电流。磁路的B-H曲线表明,在饱和区可以获得较小的电感值,而在不饱和区可以获得很高的电感值。饱和和不饱和区之间的电抗窗口取决于磁性材料、磁芯尺寸及其偏置条件[1]。本文对所提出的整箱箱在不同操作模式下进行了完整的数学分析。仿真结果验证了该方法的有效性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Design and study of a saturated dc reactor fault current limiter
Since magnetic core of an inductor is easily saturated and then absorbs extra energy due to saturation, most of inductors are designed with an air core. The inductor requires so many wires to make large inductance and these expensive coils are one of the weak points of the dc reactor type fault current limiter (FCL). To solve this problem, reverse magnetization bias method is introduced. One kind of fault current limiter using dc biased saturated core has been studied in this paper. All exciting saturated cores are ac type. The proposed FCL is a dc reactor type where all the windings carry dc current. The B-H curve of a magnetic circuit shows that less inductance value can be achieved in saturated region and very high value in unsaturated region. The reactance window between the saturated and unsaturated region depends on magnetic material, core size and its biasing condition [1]. The complete mathematical analysis in different modes of operations of the proposed FCL is given. The simulation results are presented to validate its effectiveness.
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