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Data processing procedure using distribution of slopes of phase differences for broadband VHF interferometer

机译:宽带VHF干涉仪使用相位差斜率分布的数据处理程序

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The upgraded VHF digital interferometer (VHF DITF) system is introduced which can continuously sample the radiation associated with lightning. A new processing technique was implemented which uses the distribution of slopes of the phase difference versus frequency to locate the radiation source. By using this technique, frequency components which are not due to lightning can be excluded and low as well as high amplitude sources are located. As a result, both positive breakdown and negative breakdown are located, and negative recoil leaders (recoil leaders) are visualized in great detail. The recoil leaders which continue into the positive charge region are seen to slow their propagation and dim their radiation as they cross the flash initiation region. Analysis of the relative received power of the different breakdown types, negative leaders, recoil leaders, and positive leaders, also can be made. In both the intracloud and cloud-to-ground flash, the modes of the distributions of received power for negative leaders, recoil leaders, and positive leaders were approximately the same. The brightest emissions seen from the positive leader were substantially lower than the brightest emission seen from the negative leader. The results also indicate that positive leaders as well as lower elevation negative leader emit more low frequency radiation than recoil leaders and high-elevation negative leaders. By continuously sampling the VHF waveform, the upgraded VHF DITF locates many weak sources which the previous system was not capable of locating.
机译:引入了升级的VHF数字干涉仪(VHF DITF)系统,该系统可以连续采样与雷电有关的辐射。实施了一种新的处理技术,该技术使用了相位差与频率的斜率分布来定位辐射源。通过使用此技术,可以排除不是由于闪电引起的频率分量,并且可以定位低振幅和高振幅源。结果,定位了正向击穿和负向击穿,并且负向反冲引导器(反冲引导器)得到了非常详细的可视化。可以看到,继续进入正电荷区域的反冲引导器在穿过闪光起始区域时会减慢其传播并使辐射变暗。还可以分析不同击穿类型(消极领导者,后坐领导者和积极领导者)的相对接收能力。在云内和云对地闪存中,负向领导,后坐向领导和正向领导者的接收功率分配模式大致相同。从正面领导者看到的最亮的排放物显着低于从负面领导者看到的最亮的排放物。结果还表明,正向引导者和低海拔负向引导者比后坐力引导者和高海拔负向领导者发射更多的低频辐射。通过连续采样VHF波形,升级后的VHF DITF可以找到许多以前系统无法定位的弱信号源。

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