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首页> 外文期刊>Dielectrics and Electrical Insulation, IEEE Transactions on >Effect of high-frequency high-voltage impulse conditioning on inrush current interruption of vacuum interrupters
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Effect of high-frequency high-voltage impulse conditioning on inrush current interruption of vacuum interrupters

机译:高频高压脉冲调节对真空灭弧室浪涌电流中断的影响

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摘要

The objective of this paper is to investigate the effect of a high-frequency high-voltage impulse conditioning technique on the inrush current interruption phenomena. In this paper, the inrush current interruption phenomena referred to the actual interruption and the currentless period following interruption. First, Six 7.2 kV vacuum interrupters (VIs) were conditioned by 400 batches of voltage impulses. The duration of each batch were set to 0.1 s. The peak value of each impulse could reach up to 100 kV. The repetition frequency of the impulse was set to 1000 Hz. The contact gap was 0.8 mm. The VIs were tested for the inrush current interruption performance with inrush current set to 2 kA and 5 kA, with a frequency of about 3800 Hz. The experimental results showed that there were two different types of inrush current interruption depending on high-frequency high-voltage impulse conditioning. The inrush current interruption type I referred to the inrush current interruption during the prestrike process before the contacts touched. This type inrush current interruption could be caused by the erosion of prestrike arc. Moreover, the high frequency voltage impulse conditioning influenced the occurrence frequency, the number of interruptions and the duration of the inrush current interruption type I. The inrush current interruption type II referred to the inrush current interruption during the contact bouncing process after the contacts touched. The inrush current interruption type II occurred only in the case of the VIs after conditioning. Furthermore, the occurrence frequency of the inrush current type II decreased with increasing inrush current.
机译:本文的目的是研究高频高压脉冲调节技术对浪涌电流中断现象的影响。在本文中,浪涌电流中断现象指的是实际中断和中断之后的无电流周期。首先,通过400批电压脉冲对六个7.2 kV真空灭弧室(VI)进行调节。每个批次的持续时间设置为0.1 s。每个脉冲的峰值可以达到100 kV。脉冲的重复频率设置为1000 Hz。接触间隙为0.8mm。对VI进行了浪涌电流中断性能测试,浪涌电流设置为2 kA和5 kA,频率约为3800 Hz。实验结果表明,取决于高频高压脉冲调节,有两种不同类型的浪涌电流中断。涌入电流中断类型I是指在触头接触之前的预触击过程中的涌入电流中断。这种类型的浪涌电流中断可能是由于预触电弧的腐蚀引起的。此外,高频电压脉冲调节会影响涌入电流中断类型I的发生频率,中断次数和持续时间。涌入电流中断类型II是指触点接触后在触点弹跳过程中的涌入电流中断。 II型浪涌电流中断仅在调节后的VI情况下发生。此外,II型浪涌电流的发生频率随着浪涌电流的增加而降低。

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