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Wavelet Analysis of the Onset of VHF and Microwave Radiation Emitted by Lightning

机译:闪电发出的VHF和微波辐射发作的小波分析

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Lightning flash is an electrical discharge in air (dielectric breakdown) which emits electromagnetic (EM) fields across very wide spectra from a few Hertz up to visible wavelength. Electrical breakdown process is an important event that initiates lightning. For electrical breakdown process to occur, it must fulfill two conditions which are at least has one free electron and the electric field region is more than 3 MV/m. This process starts with electron avalanche in millimeter scale then grows into streamer in centimeter scale. Lastly, from streamer it will grow into leader in meter scale. It has already established that streamer emits intensely at Very High Frequency (VHF) band as it's already proven both theoretically and experimentally. A study by Cooray, theoretically proved that emission of electron avalanche peaks at microwave band. Air-gap parallel plate antenna which could operate at 1 GHz with remote sensing is designed and simulated to measure the microwave radiation emitted by lightning. Both temporal and wavelet analyses are used to compare the onset of microwave radiation and VHF radiation in both time and frequency domains to determine electron avalanche appears at which electromagnetic band.
机译:闪电闪光是在空气中的放电(介电击穿),其在非常宽的光谱上发射电磁(EM)字段,从几个赫兹到可见波长。电击过程是启动闪电的重要事件。为了发生电击穿过程,它必须满足两个至少具有一个自由电子的条件,并且电场区域大于3mV / m。该过程从电子雪崩以毫米刻度开始,然后以厘米刻度生长为飘带。最后,从拖飘玻璃,它将成长为米规模的领导者。它已经建立了拖缆在非常高的频率(VHF)乐队中发出强烈的发射,因为它已经在理论上和实验上被证明。通过Cooray进行研究,理论上证明了微波带的电子雪崩峰的发射。设计并模拟可以在1 GHz下运行的气隙平行板天线,以测量闪电发出的微波辐射。时间和小波分析都用于比较微波辐射的开始和在两个时间和频率域中的VHF辐射来确定电子雪崩出现在哪个电磁带。

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