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Experimental Investigation on the Breakdown Voltage Jitter of Corona-Stabilized Switch at Low Repetition Rate

机译:低重复频率下电晕稳定开关击穿电压抖动的实验研究

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摘要

Studies have been taken into the breakdown voltage jitter of corona-stabilized switch at high repetition rate up to several kHz. It is thought that the gas recovery affect the jitter of breakdown voltage directly at high repetition rate, because the gas switch will breakdown at a low voltage if the gas cannot fully recover. The breakdown voltage jitter is called voltage jitter in the following paper. However, based on the experimental results, the voltage jitter still exists at low repetition rate, even at single-shot mode. This is not explained by the previous studies. In this paper, voltage jitter below 100 Hz of a corona-stabilized switch is investigated experimentally. A corona-stabilized switch is introduced, using a cylindrical electrode as the cathode and a plane electrode as the anode. The gas used between the electrodes is SF. A negative pulse with a maximum width of is used to charge this switch. The tested factors include gas pressure, gap space, repetition rate, and switch geometry. Experimental results show that voltage jitter is mainly affected by the gas pressure and switch geometry. It is seen that voltage jitter decreases as gas pressure increases and a suitable cathode geometry presents a low voltage jitter. Critical volume is a region close to the highly stressed electrode, where the presence of an electron will lead to an electron avalanche which attains a critical size and hence leads to a stabilizing corona. Critical volume is introduced to explain the experimental results. It is found that less voltage jitter can be achieved with a smaller and more concentrated critical volume, as well as efficient corona stabilization. The results indicate that voltage jitter may be reduced by optimize the critical volume at low repetition rate.
机译:已经研究了高达几kHz的高重复频率的电晕稳定开关的击穿电压抖动。可以认为,气体回收率在高重复频率下直接影响击穿电压的抖动,因为如果气体不能完全恢复,则气体开关将在低电压下击穿。击穿电压抖动在以下论文中称为电压抖动。但是,根据实验结果,即使在单次模式下,电压抖动仍然以低重复率存在。以前的研究没有对此进行解释。本文通过电晕稳定开关对低于100 Hz的电压抖动进行了实验研究。引入电晕稳定开关,使用圆柱电极作为阴极,平面电极作为阳极。电极之间使用的气体是SF。最大宽度为的负脉冲用于对该开关充电。测试的因素包括气压,间隙空间,重复率和开关几何形状。实验结果表明,电压抖动主要受气压和开关几何形状的影响。可以看出,电压波动随着气压的增加而降低,并且合适的阴极几何形状呈现出低电压波动。临界体积是靠近高应力电极的区域,电子的存在将导致电子雪崩,雪崩达到临界尺寸,从而导致稳定的电晕。临界体积介绍了实验结果。发现以较小和更集中的临界体积可以实现较小的电压抖动,以及有效的电晕稳定。结果表明,可以通过在低重复率下优化临界体积来降低电压抖动。

著录项

  • 来源
    《IEEE Transactions on Plasma Science》 |2017年第8期|2351-2357|共7页
  • 作者单位

    Science and Technology on High Power Microwave Laboratory, Northwest Insititute of Nuclear Technology, Xi’an, China;

    Science and Technology on High Power Microwave Laboratory, Northwest Insititute of Nuclear Technology, Xi’an, China;

    Science and Technology on High Power Microwave Laboratory, Northwest Insititute of Nuclear Technology, Xi’an, China;

    Science and Technology on High Power Microwave Laboratory, Northwest Insititute of Nuclear Technology, Xi’an, China;

    Science and Technology on High Power Microwave Laboratory, Northwest Insititute of Nuclear Technology, Xi’an, China;

    Science and Technology on High Power Microwave Laboratory, Northwest Insititute of Nuclear Technology, Xi’an, China;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Jitter; Switches; Electrodes; Bars; Geometry; Corona; Breakdown voltage;

    机译:抖动;开关;电极;条;几何;电晕;击穿电压;

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