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Improving ionospheric imaging via the incorporation of direct ionosonde observations into GPS tomography

机译:通过将直接电离探空仪观测值整合到GPS层析成像中来改善电离层成像

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The Multi Instrument Data Analysis system, MIDAS is an algorithm that images the ionosphere in three or four dimensions and was originally developed by Mitchell and Spencer (2003) [1]. MIDAS often operates using GPS measurements of slant Total Electron Content, but Chartier et al. [2012] [2] showed that incorporating ionosonde data into the algorithm could improve imaging of the ionosphere in the vertical dimension. Here we extend the technique to incorporation of multiple ionosondes, the key problem is to transition horizontally between regions of different peak height and changing densities. This approach is validated via comparisons with independent satellite data.
机译:MIDAS多功能仪器数据分析系统是一种对电离层进行三到四维成像的算法,最初由Mitchell和Spencer(2003)开发[1]。 MIDAS通常使用GPS对倾斜的总电子含量的测量进行操作,但Chartier等人。 [2012] [2]表明,将电离探空仪数据纳入算法可以改善电离层在垂直方向的成像。在这里,我们将技术扩展到包含多个离子探空仪,关键问题是在不同峰高和密度变化的区域之间水平过渡。通过与独立卫星数据的比较验证了该方法。

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