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Investigation of correlation between vacuum breakdown phenomena and field emission current during shunt capacitor switching

机译:分流电容器切换过程中真空击穿现象与场发射电流相关性研究

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In the case of interrupting capacitive loads, the most challenging problem for vacuum interrupters is to withstand recovery voltage during opening operation. In addition, the field enhancement factor of vacuum contacts is assumed to be high due to the damage of contacts caused by making the inrush current. In this paper, simulated shunt capacitor switching tests are carried out and the field emission current across the contact gap is measured to research the influence of the inrush current on the breakdown phenomena during opening operation. All breakdowns occur before the gap spacing reaches the maximum value and it is determined that there is a correlation between the electric field breakdown and the field emission current measured before the breakdowns. Furthermore, the found correlation is independent of the amplitude of the inrush current. The electric field breakdown is nearly invariant under the condition that the measured field emission current is constant regardless of the inrush current. However, the field emission current tends to be high in the presence of a large inrush current. The difference in the expected field emission current is believed to affect the electric field breakdown.
机译:在中断电容负载的情况下,真空中断器的最具挑战性的问题是在打开操作期间承受恢复电压。此外,由于通过制造浪涌电流而导致的接触损坏,假设真空触点的现场增强因子很高。在本文中,进行了模拟的分流电容器切换测试,测量了接触间隙上的场发射电流,以研究打开操作期间浪涌电流对击穿现象的影响。在间隙间隔达到最大值之前发生所有故障,并且确定电场击穿和在故障之前测量的场发射电流之间存在相关性。此外,发现的相关性与浪涌电流的幅度无关。在测量的场发射电流恒定的条件下,电场击穿几乎不变,而不管浪涌电流如何。然而,场发射电流在很大的浪涌电流存在下趋于高。认为预期场发射电流的差异影响电场击穿。

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