首页> 外文会议>International symposium on high voltage engineering >Simulation, Generation and Measurement of Oscillated Lightning Impulse Voltage
【24h】

Simulation, Generation and Measurement of Oscillated Lightning Impulse Voltage

机译:振荡闪电脉冲电压的仿真,生成和测量

获取原文

摘要

This paper reports about the experiments to simulate and generate oscillating voltage impulses as well as to measure such voltage impulses. In the first part, the tower of overhead lines will be modelled in an EMTP program. The voltage across the insulator string with a length of 300 cm will be simulated by applying a lightning current impulse into the tower. As the next part, the Marx generator will be modified to generate a standard lightning impulse voltage with a superimposition of oscillations. In order to generate such impulses, the damping resistors of the Marx generator have to be replaced by a set of inductors and resistors in series. The third part deals with the measurement of the breakdown voltage on a rod-rod electrode configuration with different air gaps and frequencies. A cumulative distribution function of the breakdown voltage and the voltage-time curve will be extracted for each case. As the last step, the measurement results will be compared with the breakdown characteristic of the standard lightning impulse voltage: The higher the frequency of the oscillation, the voltage-time curves comes nearer to the standard impulse voltage, which is caused by a higher damping at higher frequencies. Moreover, an oscillated lightning impulse voltage has a higher crest value of the breakdown voltage in comparison to the standard lightning impulse voltage, because of the overshoot of the voltage shape.
机译:本文报告了模拟和产生振荡电压冲动的实验以及测量这种电压脉冲。在第一部分中,架空线塔将在EMTP程序中进行建模。通过将雷电流脉冲施加到塔架上,将模拟穿过300cm的绝缘体串的电压。作为下一部分,将修改马克思生成器以产生具有叠加的标准闪电脉冲电压。为了产生这样的冲动,马克思发生器的阻尼电阻必须由串联的一组电感器和电阻器代替。第三部分涉及用不同的气隙和频率测量杆杆电极配置上的击穿电压。对于每种情况,将提取击穿电压的累积分布函数和电压 - 时曲线。作为最后一步,测量结果将与标准闪电脉冲电压的击穿特性进行比较:振荡频率越高,电压时曲线越靠近标准脉冲电压,这是由更高的阻尼引起的在较高频率下。此外,与标准闪电脉冲电压相比,振荡闪电脉冲电压具有较高的击穿电压的击球值,因为电压形状的过冲。

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