...
首页> 外文期刊>IEEE Transactions on Power Delivery >Detecting arcing downed-wires using fault current flicker and half-cycle asymmetry
【24h】

Detecting arcing downed-wires using fault current flicker and half-cycle asymmetry

机译:使用故障电流闪变和半周期不对称检测电弧引下线

获取原文
获取原文并翻译 | 示例
           

摘要

The downed-wires problem, known as high impedance faults, is described. A high voltage laboratory setup was devised to investigate the phenomenon. The laboratory model results agreed with field test results, and previous research efforts. The arcing fault model was justified. The setup was used as a source of fault current signal. A simple approach was taken to design an arcing fault detector. The algorithm utilizes the random behavior of the fault current. It compares the positive and negative current peaks in one cycle to those in the next cycle to measure the flicker in the current signal. The asymmetry of the current is calculated by comparing the positive peak to the negative peak, for each cycle: the moving window length is half a cycle. Both values are used as a signature of arcing. The result is filtered and compared with a suitable detection threshold. The algorithm was tested by traces of normal load, and no-load current disturbed by currents of faults on dry and wet soil, arc welders, computers, and fluorescent light loads, as well as short circuit currents. The algorithm performed well under the test conditions, except for the arc welder load. This load is also a source of insecurity for other algorithms. The detection criterion will be integrated with another detection method to improve the security during arcing load events.
机译:描述了称为高阻抗故障的电线下垂问题。设计了一个高压实验室设备来研究这种现象。实验室模型结果与现场测试结果以及先前的研究成果相吻合。电弧故障模型是合理的。该设置被用作故障电流信号的来源。采用一种简单的方法来设计电弧故障检测器。该算法利用了故障​​电流的随机行为。它将一个周期内的正负电流峰值与下一周期内的正和负电流峰值进行比较,以测量电流信号中的闪烁。通过比较每个周期的正峰值和负峰值来计算电流的不对称性:移动窗口的长度为半个周期。这两个值都用作电弧的标志。过滤结果并将其与合适的检测阈值进行比较。通过跟踪正常负载,空载电流对算法进行测试,该空载电流受到干湿土壤,电弧焊机,计算机和荧光灯负载上的故障电流以及短路电流的干扰。该算法在测试条件下表现出色,除了电弧焊机的负载。此负载也是其他算法不安全的根源。该检测标准将与另一种检测方法集成在一起,以提高电弧负载事件期间的安全性。

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