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Medium-scale 4-D ionospheric tomography using a dense GPS network

机译:使用密集GPS网络的中尺度4D电离层层析成像

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The ionosphere above Scandinavia in December 2006 is successfully imaged by 4-dimensional tomography using the software package MIDAS from the University of Bath. The method concentrates on medium-scale structures: between 100 km and 2000 km in horizontal size. The input consists of TEC measurements from the dense GPS network Geotrim in Finland. In order to ensure sufficient vertical resolution of the result, EISCAT incoherent scatter radar data from Tromso are used as additional input to provide the vertical profile information. The TEC offset of the measurements is unknown, but the inversion procedure is able to determine this automatically. This auto-calibration is shown to work well. Comparisons with EISCAT radar results and with occul-tation results show that the inversion using EISCAT data for profile information is much better able to resolve vertical profiles of irregular structures than the inversion using built-in profiles. Still, with either method the intensities of irregular structures of sizes near the resolution (about 100 km horizontal size) can be underestimated. Also, the accuracy of the inversion worsens above areas where no receivers are available. The ionosphere over Scandinavia in December 2006 often showed a dense E-layer in early morning hours, which generally disappeared during midday when a dense F-layer was present. On 14 December, a strong coronal mass ejection occurred, and many intense irregularities appeared in the ionosphere, which extended to high altitudes.
机译:使用巴斯大学的MIDAS软件包,通过4维断层扫描成功地扫描了2006年12月在斯堪的纳维亚半岛上方的电离层。该方法集中于中等规模的结构:水平大小在100 km至2000 km之间。输入包括来自芬兰密集GPS网络Geotrim的TEC测量。为了确保结果具有足够的垂直分辨率,将来自Tromso的EISCAT非相干散射雷达数据用作附加输入,以提供垂直剖面信息。测量的TEC偏移量是未知的,但是反演程序能够自动确定这一点。这种自动校准显示效果很好。与EISCAT雷达结果和闭塞结果的比较表明,使用EISCAT数据获取剖面信息的反演比使用内置剖面的反演能更好地解析不规则结构的垂直剖面。但是,无论采用哪种方法,都可能会低估接近分辨率(水平尺寸约为100 km)的不规则结构的强度。同样,在没有可用接收器的区域上方,反演的准确性也会恶化。 2006年12月在斯堪的纳维亚半岛上空的电离层通常在清晨出现密集的E层,通常在中午出现密集的F层时消失。 12月14日,发生了强烈的日冕物质抛射,电离层出现了许多强烈的不规则现象,并延伸到了高空。

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