首页> 外文期刊>Dielectrics and Electrical Insulation, IEEE Transactions on >Evaluation of breakdown characteristics of CO2 gas for non-standard lightning impulse waveforms - breakdown characteristics under double-frequency oscillation waveforms and single-frequency oscillation waveforms in the presence of bias voltage
【24h】

Evaluation of breakdown characteristics of CO2 gas for non-standard lightning impulse waveforms - breakdown characteristics under double-frequency oscillation waveforms and single-frequency oscillation waveforms in the presence of bias voltage

机译:非标准雷电冲击波形的CO 2 气体击穿特性评估-在存在偏置电压的情况下,双频振荡波形和单频振荡波形下的击穿特性

获取原文
获取原文并翻译 | 示例

摘要

SF6 gas, an insulation medium used for gas insulated switchgear (GIS), has a high global warming potential, hence the search for an effective alternative is required from an environmental perspective. The authors focus particularly on CO2 gas, which has a low global warming potential, as one of these potential alternatives. In order to apply this CO2 gas to actual equipment, the insulation characteristics for overvoltage waveforms generated in an actual field (called non-standard lightning impulse waveforms) must be obtained. Accordingly, in previous studies, the insulation characteristics for single-frequency oscillation waveforms were experimentally obtained in the quasi-uniform electric field, which is the basis when performing the insulation design of GIS, and its evaluation method was examined. In this paper, to further elaborate the evaluation method established thus, the insulation characteristics in relation to complex oscillatory waveforms generated in actual substations, e.g. double-frequency oscillation waveforms and single-frequency oscillation waveforms on which a dc component (bias voltage) that remains due to the superimposed operation of a switching device, were obtained. Consequently, the results obtained indicated that negativepolarity waveforms were more severe in terms of electrical insulation under the doublefrequency oscillation waveforms as well as under the single-frequency oscillation waveforms. Therefore, when considering a dielectric strength, it is reasonable to conduct experiments using negative-polarity waveforms for the complex oscillatory waveforms, such as the doublefrequency oscillation waveforms. Furthermore, a study was performed on a method of evaluating insulation characteristics for non-standard lightning impulse waveforms of the CO2 gas gap via a comprehensive approach using the results including the previous ones. As a result, as in the case of studies conducted previously on SF6 gas, the insulation characteristics, including complex oscillatory waveforms generated in actual power systems, could be expressed by a single characteristic line by using the parameter of duration.
机译:SF 6 气体(一种用于气体绝缘开关设备(GIS)的绝缘介质)具有很高的全球变暖潜能,因此从环境角度出发,需要寻求有效的替代方法。作者特别关注具有低全球变暖潜力的CO 2 气体,作为这些潜在替代物之一。为了将这种CO 2 气体应用于实际设备,必须获得在实际现场中产生的过电压波形(称为非标准雷电冲击波形)的绝缘特性。因此,在以往的研究中,通过实验在准均匀电场中获得了单频振荡波形的绝缘特性,这是进行GIS绝缘设计的基础,并对其评估方法进行了研究。在本文中,为了进一步阐述由此建立的评估方法,与在实际变电站中产生的复杂振荡波形有关的绝缘特性,例如:获得了双频振荡波形和单频振荡波形,在该双频振荡波形和单频振荡波形上,由于开关装置的叠加操作而残留了直流分量(偏压)。因此,获得的结果表明,在电绝缘方面,在双频振荡波形下以及在单频振荡波形下,负极性波形都更加严重。因此,在考虑介电强度时,对于复合振荡波形,例如双频振荡波形,使用负极性波形进行实验是合理的。此外,使用包括先前结果在内的综合方法,通过综合方法对CO 2 气隙的非标准雷电冲击波形的绝缘特性进行评估的方法进行了研究。结果,如先前对SF 6气体进行的研究那样,绝缘特性,包括在实际电力系统中产生的复杂振荡波形,可以通过使用持续时间参数由一条特性线表示。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号