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Improving the Abel transform inversion using bending angles from FORMOSAT-3/COSMIC

机译:使用FORMOSAT-3 / COSMIC的弯曲角度改善Abel变换反演

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The FORMOSAT-3/COSMIC satellite constellation has become an important tool toward providing global remote sensing data for sounding of the atmosphere of the earth and the ionosphere in particular. In this study, the electron density profiles are derived using the Abel transform inversion. Some drawbacks of this transform in LEO GPS sounding can be overcome by considering the separability concept: horizontal gradients of vertical total electron content (VTEC) information are incorporated by the inversion method, providing more accurate electron density determinations. The novelty presented in this paper with respect to previous works is the use of the phase change between the GPS transmitter and the LEO receiver as the main observable instead of the ionospheric combination of carrier phase observables for the implementation of separability in the inversion process. Some of the characteristics of the method when applied to the excess phase are discussed. The results obtained show the equivalence of both approaches but the method exposed in this work has the potentiality to be applied to the neutral atmosphere. Recent FORMOSAT-3/COSMIC data have been processed with both the classical Abel inversion and the separability approach and evaluated versus colocated ionosonde data.
机译:FORMOSAT-3 / COSMIC卫星星座已成为一种重要工具,可提供全球遥感数据,特别是对地球大气和电离层的探测。在这项研究中,电子密度分布图是使用Abel变换反演得出的。通过考虑可分离性概念,可以克服LEO GPS探测中这种转换的一些缺点:垂直总电子含量(VTEC)信息的水平梯度通过反演方法合并,从而提供了更准确的电子密度确定。本文相对于以前的工作提出的新颖性是使用GPS发射器和LEO接收器之间的相变作为主要可观测值,而不是使用载波相位可观测值的电离层组合来实现反演过程中的可分离性。讨论了该方法应用于过量相时的一些特性。获得的结果表明这两种方法是等效的,但这项工作中揭示的方法具有应用于中性大气的潜力。最近的FORMOSAT-3 / COSMIC数据已通过经典的Abel反演和可分离性方法进行了处理,并与同位置的离子探空仪数据进行了评估。

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