真空灭流器的电容电流开关和涌流

He Yang, Yingsan Geng, Zhiyuan Liu
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引用次数: 6

摘要

在配电系统中,容性电流开关对功率因数校正越来越有必要。然而,重击是潜在的危险,因为它们可能导致过电压,这可能对电力系统有害。在容性电流开关中,真空灭流器(VI)的介电强度在很大程度上取决于被浪涌电流改变的接触面条件。但涌流对VIs重击现象的影响尚不清楚。本文的目的是了解在不同幅值涌流作用下VI的重击特性。浪涌电流的峰值设置在0kA、2kA、5kA和10kA。使用额定电压7.2kV的VIs。对于每个测试操作,在制造操作期间,VI都会遭受浪涌电流。然后在开关电流(低于1 a)中断后,在真空灭弧上出现直流恢复电压。实验结果表明,冲击电流越大,接触面损伤越大,从而导致多次冲击。在冲击电流为0kA、2kA和5kA时,重击概率平均为4.6%、17.9%和30.4%。在10kA的涌流下焊接几次试验操作后,VIs无法打开。在恢复电压过程中,高幅值的涌流比低幅值的涌流更早地诱发骤停。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Capacitive current switching of Vacuum Interrupters and inrush currents
Capacitive current switching has become increasingly necessary for power factor correction in distribution systems. However, Restrikes are potentially dangerous as they could cause overvoltage which can be harmful to the power system. The dielectric strength of the Vacuum Interrupter (VI) in a capacitive current switching is strongly determined by a condition of the contact surfaces modified by an inrush current. But the influence of the inrush current on restrike phenomenon of VIs is still not well understood. The objective of this paper is to understand the restrike characteristics of VI under the inrush currents of different amplitudes. The peak values of inrush currents are set at 0kA, 2kA, 5kA and 10kA. VIs with a rated voltage of 7.2kV are used. For the each testing operation, VI suffers an inrush current during a making operation. Then a DC recovery voltage appeared across the vacuum interrupters after a switching current (lower than 1 A) is interrupted. The experimental results show that a higher inrush current induces more damages to the contact surfaces, which result in more restrikes. The restrike probabilities are 4.6%, 17.9% and 30.4% on average at the inrush current of 0kA, 2kA and 5kA respectively. VIs cannot be opened after several test operations by a welding at the inrush current of 10kA. The inrush currents with higher amplitude induce the restike occurring earlier than that of lower amplitude during the recovery voltage.
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