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Total electron content mapping using global navigation satellite systems

机译:使用全球导航卫星系统绘制的总电子含量图

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We present the results of application high-orbital (GPS/GLONASS) and low-orbital (Parus/TRANSIT) satellite navigation systems to the study of different-scale irregularities in the ionospheric total electron content (TEC), such as troughs, crests of equatorial anomaly, traveling ionospheric disturbances and so on. We also present the results of the comparison of the global ionospheric maps (GIM) of vertical TEC, which are now widely used in ionospheric research, with the results of low- and high-orbital radio tomographic ionospheric imaging and with the data of UV spectral imaging form GUVI instrument (Global Ultraviolet Imager). The data from low-orbital radiotomography systems in Russia (Moscow-Svalbard) and Alaska (Arctic Village-Cordova) were involved in the comparison as well as the data of the IGS (International GNSS Service) network. The comparisons cover the time interval from 2003 to 2008, which includes both geomagnetically quiet and disturbed periods. We also demonstrate the possibilities of GPS/GLONASS TEC studies in connection with solar flares and artificial ionospheric heating.
机译:我们介绍应用高轨道(GPS / GLONASS)和低轨道(Parus / TRANSIT)卫星导航系统的结果,以研究电离层总电子含量(TEC)的不同尺度的不规则性,例如波谷,波峰赤道异常,旅行电离层干扰等。我们还介绍了垂直TEC的全球电离层图(GIM)的比较结果,该结果现在已广泛用于电离层研究中,包括低轨道和高轨道射电层析电离层成像结果以及紫外线光谱数据GUVI仪器(全球紫外线成像仪)成像。来自俄罗斯(莫斯科-斯瓦尔巴特群岛)和阿拉斯加(北极村-科尔多瓦)的低轨道放射断层照相系统的数据以及IGS(国际GNSS服务)网络的数据均参与了比较。这些比较涵盖了从2003年到2008年的时间间隔,其中既包括地磁静默期也包括扰动期。我们还将证明与太阳耀斑和人工电离层加热有关的GPS / GLONASS TEC研究的可能性。

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