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Direction-of-Arrival Estimation of VHF Signals Recorded on the International Space Station and Simultaneous Observations of Optical Lightning

机译:国际空间站上记录的VHF信号的到达方向估计和光学闪电的同时观测

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We report an initial investigation of the new location method of a very high frequency (VHF) radiation source, using signals recorded at the International Space Station. A VHF interferometer (VITF) has two VHF sensors. Locating lightning with VHF bands is useful to locate the position of the charge distribution in the thunderstorm. The location method of a radio source proposed used two direction-of-arrival estimation techniques. One is the interferometric technique, and another is based on the ionospheric propagation delay measurement of received signals. The combination of the two techniques provides two angular positions of the radiation source. When an altitude of a radiation source is assumed, we can determine two possible positions. One of the two positions was associated with the radiation source, while the other was not. In this paper, we compared the position of lightning and sprite imager (LSI) data, which are simultaneously captured during a lightning emission, with the locating position near the emission. The data set of the VITF within 100 ms of the optical lightning emission captured with the LSI was used. The temporally simultaneous event seems to be associated with the same lightning event. The estimated radiation positions were spatially in close agreement with the optical lightning positions captured with LSI, under nighttime ionosphere conditions. From statistical analysis, the spatial difference of the standard deviation changed from 15.3 to 30.8 km depending on the installation direction of the VHF sensors. The usefulness and limitations of the method are also discussed.
机译:我们报告了使用国际空间站记录的信号对甚高频(VHF)辐射源的新定位方法进行的初步调查。 VHF干涉仪(VITF)具有两个VHF传感器。用VHF频段定位闪电有助于定位雷暴中电荷分布的位置。所提出的无线电源的定位方法使用了两种到达方向估计技术。一种是干涉技术,另一种是基于对接收信号的电离层传播延迟的测量。两种技术的结合提供了辐射源的两个角位置。当假设辐射源的高度时,我们可以确定两个可能的位置。这两个位置中的一个与辐射源相关,而另一个与辐射源无关。在本文中,我们比较了在雷电发射期间同时捕获的雷电和子画面成像器(LSI)数据的位置,以及在雷射发射附近的定位位置。使用在LSI捕获的光闪电发射100毫秒内的VITF数据集。时间上同时发生的事件似乎与同一闪电事件相关。在夜间电离层条件下,估计的辐射位置在空间上与LSI捕获的光学闪电位置非常一致。根据统计分析,根据VHF传感器的安装方向,标准偏差的空间差从15.3 km变为30.8 km。还讨论了该方法的有用性和局限性。

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