用大Rogowski线圈测量雷电电流的具体情况

E. Shulzhenko, M. Rock, J. Birkl, T. Boehm
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引用次数: 5

摘要

本文介绍了我们设计和使用大型Rogowski线圈(RC)测量雷电电流的经验。采用周长在6m ~ 20m左右的大型RC进行测量时,由于测量时距离共振频率较近,因此本文提出的测量电路可以消除电流脉冲尾部低频分量的损耗。从根本上说,该电路代表了一种新的雷电电流测量方法,并在实验室和通信塔上的真实雷电事件中进行了测试。本文对实验结果进行了详细的描述和讨论。此外,还考虑了从同一RC同时测量脉冲电流和连续电流(CC -来自高测量对象的向上闪电)的可能性。在EMTP-ATP中进行了时域和频域网络仿真,并与瞬态和频响测量结果进行了比较。通过使用脚本简化了我们的科学研究,这些脚本最初是在FAMOS和MathCAD中开发的。算法和他们的工作结果也在这里提出。此外,为了获得精确的测量结果,还实现了一些抗电磁干扰的措施。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Specifics by measuring of lightning current with large Rogowski Coil
In this paper our experience of designing and using of a large Rogowski Coil (RC) for measuring of lightning currents is described. Some inconveniences regarding the use of large RC with circumference about 6 m to 20 m, namely closeness to resonance frequency during measuring, loss of low-frequency components of the current impulse tail part can be eliminated by presented here measuring circuit. Basically, this circuit represents a new approach of lightning current measuring, which was tested in laboratory and during real lightning events on a communication tower. The results are depicted and discussed in detail in this paper. Moreover, the possibility to measure both impulse and continuous current (CC - upward lightning from high measuring object) from the same RC is considered. Some time and frequency domain network simulations were carried out in EMTP-ATP and compared with transient and frequency response measurements. Our scientific investigations were simplified by using scripts, initially developed in FAMOS and in MathCAD. The algorithms and results of their work are presented here as well. Also, in order to obtain precise measurements, some measures against electromagnetic interferences have been realized.
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