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GPS Discrimination of Traveling Ionospheric Disturbances from Underground Nuclear Explosions and Earthquakes

机译:GPS对地下核爆炸和地震造成的电离层扰动的区分

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摘要

Various geophysical activities generate characteristic traveling ionospheric disturbances (TIDs), which are detectible using the GPS data from the Global Navigation Satellite System (GNSS). In this paper, numerical third-order slant total electron content (STEC) derivatives of the TIDs from the 2006 and 2009 North Korean underground nuclear explosions (UNEs) are compared to the STEC derivatives of the TIDs from the 2011 Japanese Tohoku earthquake. The amplitude spectra of the STEC derivative waveforms from the earthquake have significantly lower frequency components than those from the UNEs. In addition, a correlation analysis found that the phase differences between the earthquake and UNE waveforms were much greater than those between the waveforms of the UNEs. Thus, the TIDs induced by the two different events may be readily discriminated on the basis of their distinctive spectral properties.
机译:各种地球物理活动都会产生特征性的电离层干扰(TID),使用来自全球导航卫星系统(GNSS)的GPS数据可以检测到这些干扰。本文将2006年和2009年朝鲜地下核爆炸(UNE)产生的TID的数字三阶倾斜总电子含量(STEC)衍生物与2011年日本东北地震产生的TID的STEC衍生物进行了比较。来自地震的STEC导数波形的幅度谱具有比来自UNE的显着更低的频率分量。此外,相关分析发现,地震与UNE波形之间的相位差远大于UNE波形之间的相位差。因此,由两个不同事件引起的TID可以根据其独特的光谱特性轻松进行区分。

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