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Breakdown characteristics of SF6 in quasi-uniform field under oscillating lightning impulse voltages

机译:振荡雷电冲击电压下SF6在准均匀场中的击穿特性

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摘要

The field impulse voltage withstand test plays one of the most important roles to ensure the safety of the gas insulated equipments. It is hard to carry out the standard impulse voltage test for the equipments because the generator is very large and difficult to transport. The oscillating impulse voltage waveform has high efficiency and has been recommended by the IEC 60060-3 as the field test waveform. SF6 gas is the insulation medium of gas insulated equipments. Its insulation characteristics under different types of impulse waveforms have great influence to the design, operation and test amplitude. This paper focuses on the breakdown characteristics of SF6 gas in a quasi-uniform field under oscillating impulse voltages (OIV). Four types of oscillating impulse lightning voltage waveforms with oscillating frequency of 100, 200, 300 and 400 kHz were adopted as the test waveforms. The standard lightning impulse (SLI) voltage was also adopted as the reference waveform. A calculation model is established to explain the results. The experiment and calculation results show that the breakdown waveforms in time domain drop quickly and then have a recovery with low amplitude to zero under OIV for the influence of circuit inductor. 50% probability breakdown voltages (BDVs0%) under OIV are higher than that under SLI. The minimum breakdown voltage and BDVs0% both increase with oscillating frequency. The voltage-time distributions show that breakdowns under OIV occur in the vicinity of each wave peak of the applied voltage. OIV have a longer time lag than SLI due to the oscillation of the waveforms.
机译:现场脉冲耐压测试对于确保气体绝缘设备的安全起着最重要的作用之一。由于发电机非常大且难以运输,因此很难对设备执行标准的脉冲电压测试。振荡脉冲电压波形具有很高的效率,并已由IEC 60060-3推荐作为现场测试波形。 SF6气体是气体绝缘设备的绝缘介质。在不同类型的脉冲波形下其绝缘特性对设计,操作和测试幅度有很大影响。本文着重研究了SF6气体在振荡脉冲电压(OIV)下在准均匀场中的击穿特性。测试频率为100、200、300和400 kHz的四种类型的振荡脉冲雷电电压波形。标准雷电冲击(SLI)电压也被用作参考波形。建立计算模型以解释结果。实验和计算结果表明,在电路电感的影响下,在OIV下时域的击穿波形迅速下降,然后恢复到低幅度至零。 OIV下的50%概率击穿电压(BDVs0%)高于SLI下的概率。最小击穿电压和BDVs0%都随振荡频率而增加。电压时间分布表明,在OIV下击穿发生在施加电压的每个波峰附近。由于波形的振荡,OIV比SLI具有更长的时间滞后。

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  • 作者单位

    State Key Laboratory of Electrical Insulation and Power Equipment, Xi'an Jiaotong University, Xi'an, China;

    State Key Laboratory of Electrical Insulation and Power Equipment, Xi'an Jiaotong University, Xi'an, China;

    State Key Laboratory of Electrical Insulation and Power Equipment, Xi'an Jiaotong University, Xi'an, China;

    Department of Electrical Engineering, State University of New York at Buffalo, Buffalo, USA;

    Research Institute of Guangzhou Power Supply Bureau, Guangzhou, China;

    Research Institute of Guangzhou Power Supply Bureau, Guangzhou, 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
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    机译:视频录制;

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