带虚拟气隙电感器的概念,以提高牵引驱动应用中的故障电流能力

K. Kroičs, J. Zarembo
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引用次数: 0

摘要

能源效率在包括电力驱动在内的许多应用中都很重要。直流电力牵引驱动器需要一个输入滤波器来限制电压波动、电磁干扰和故障电流。输入滤波器电感的损耗可以通过施加磁芯和减少绕组数来减小。高故障电流可导致铁芯饱和,从而导致电感大幅降低。本文分析了引入虚拟气隙来限制铁心饱和和限制故障电流的可能性。采用有限元模拟方法对磁芯内磁通进行了分析。结果表明,所提出的方法可用于此类应用,但需要额外的控制来控制电路中的电流,从而产生虚拟气隙。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Concept of Inductor with a Virtual Air Gap for Increasing Fault Current Capability in Traction Drive Applications
Energy efficiency is important in many applications including electrical drives. DC powered electrical traction drives require an input filter to limit voltage fluctuations, electromagnetic interference, and fault currents. The losses in the inductor of the input filter can be reduced by applying a magnetic core and by reducing the number of windings. High fault current can lead to saturation of the core thus resulting in substantial inductance reduction. This paper analyzes the possibility of introducing a virtual air gap to limit core saturation and limit fault current. The FEM simulation method is used to analyze the magnetic flux in the core. The results shows that the proposed method can be useful for such applications, but additional control is required to control the current in the electrical circuit that creates a virtual air gap.
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