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On the Location of Lightning Discharges Using Time Reversal of Electromagnetic Fields

机译:利用电磁场的时间反转研究雷电的放电位置

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In this paper, we discuss the use of the electromagnetic time reversal (EMTR) method to locate lightning strikes. After a brief description of the EMTR and its application to lightning location, we mathematically demonstrate that the time-of-arrival method can be seen as a subset of EMTR. We propose three different models of backpropagation to address the issue of EMTR not being invariant for lossy media. Two sets of simulations are carried out to evaluate the accuracy of the proposed methods. The first set of simulations is performed using numerically generated fields and the proposed algorithm is shown to give very good results even if the soil is not perfectly conducting. In particular, we show that considering a model in which losses are inverted in the back propagation yields theoretically exact results for the source location. We show also that a lack of access to the complete recorded waveforms may lead to higher location errors, even though the computed errors are found to be within the range of performance of current lightning location systems (LLS). A second set of simulations is performed using the sensor data reported by the Austrian LLS. The locations obtained by way of the proposed EMTR method using only the available sensor data (amplitude, arrival time, and time-to-peak), are observed to be within a few kilometers of the locations supplied by the LLS.
机译:在本文中,我们讨论了使用电磁时间反转(EMTR)方法定位雷击的方法。在对EMTR及其在闪电位置中的应用进行了简要描述之后,我们从数学上证明了到达时间方法可以看作是EMTR的子集。我们提出了三种不同的反向传播模型,以解决EMTR对于有损媒体不是不变的问题。进行了两组仿真,以评估所提出方法的准确性。第一组模拟是使用数值生成的字段执行的,并且即使土壤不是完美地传导,所提出的算法也显示出非常好的结果。尤其是,我们表明,考虑其中在反向传播中反转了损失的模型,可以从理论上获得源位置的精确结果。我们还表明,即使发现计算出的误差在当前闪电定位系统(LLS)的性能范围内,也无法访问完整记录的波形可能会导致更高的定位误差。使用Austrian LLS报告的传感器数据执行第二组模拟。仅使用可用的传感器数据(幅度,到达时间和到达峰值的时间),通过建议的EMTR方法获得的位置被视为位于LLS提供的位置的几公里之内。

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