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Properties of “site error” of lightning direction-finder (DF) and its modeling

机译:雷电测向仪(DF)“位置误差”的性质及其建模

摘要

Lightning Location Network (LLN) based on time-of-arrival/direction-finder combined technique (TOA/DF) has been used world-widely for lightning warning and protection purpose. As long as the DF technique is involved in a LLN, it suffers from the “site error”. Firstly, based on experimental data, we have examined the properties of the “site error” as a function of the source azimuth. It is found that for a given DF, the “site error” as a function of source azimuth appears as a complicated sinusoidal waveform with a dominant cycle of either 360° or 180°. A different DF has a different “site error” pattern but this pattern is timely invariant unless the DF's site environment is changed. Secondly, with the magnetic field waveforms recorded by a broadband DF, the properties of the “site error” in frequency domain have been studied. It is found that for a given lightning stroke, the source azimuth determined by the ratio of amplitude of the spectra of magnetic fields from the two orthogonal magnetic loops of a DF varies significantly against the frequency. The source azimuth (or the “site error”) as a function of the frequency usually appears as a complicated curve with some mono-polar and bi-polar impulses superposed on a relative flat line. Thirdly, theoretical explanation and modeling of the “site error” have been attempted based on an electromagnetic dipole model. Simulations with the model show that the mono-polar impulsive fluctuations of the “site error” in frequency domain are due to the reflection of lightning incident signals on “electric-dipole-wise” structures nearby the DF, while the bi-polar ones are due to that of “magnetic-dipole-wise” structures. The model can well interpret the properties of the “site error” as a function of the source azimuth too. Furthermore, possible approaches for making “site error” corrections have been discussed.
机译:基于到达时间/测向仪组合技术(TOA / DF)的闪电定位网络(LLN)已在世界范围内用于雷电预警和保护目的。只要LLN中包含DF技术,它就会遭受“站点错误”的困扰。首先,基于实验数据,我们检查了“位点误差”随源方位角变化的特性。发现对于给定的DF,“位置误差”作为源方位角的函数表现为具有360°或180°主周期的复杂正弦波形。不同的DF具有不同的“站点错误”模式,但是除非DF的站点环境发生更改,否则该模式是及时不变的。其次,利用宽带DF记录的磁场波形,研究了频域中“站点误差”的性质。发现对于给定的雷击,源方位角由来自DF的两个正交磁环的磁场频谱的振幅之比确定,随频率变化很大。与频率成函数关系的源方位角(或“位置误差”)通常表现为复杂的曲线,其中一些单极性和双极性脉冲叠加在相对平坦的线上。第三,已经基于电磁偶极子模型尝试了“位置误差”的理论解释和建模。该模型的仿真表明,频域中“站点误差”的单极冲动波动是由于雷电入射信号在DF附近的“电偶极子”结构上的反射引起的,而双极性是由于“磁偶极子”结构。该模型也可以很好地解释“位点误差”的属性与源方位角的关系。此外,已经讨论了进行“站点误差”校正的可能方法。

著录项

  • 作者

    Chen M; Lu T; Du Y;

  • 作者单位
  • 年度 2013
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  • 原文格式 PDF
  • 正文语种 eng
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