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Assessment of vertical TEC mapping functions for space-based GNSS observations

Authors :
Xinan Yue
Jiahao Zhong
Xiankang Dou
Jiuhou Lei
Source :
GPS Solutions. 20:353-362
Publication Year :
2015
Publisher :
Springer Science and Business Media LLC, 2015.

Abstract

The mapping function is commonly used to convert slant to vertical total electron content (TEC) based on the assumption that the ionospheric electrons concentrate in a layer. The height of the layer is called ionospheric effective height (IEH) or shell height. The mapping function and IEH are generally well understood for ground-based global navigation satellite system (GNSS) observations, but they are rarely studied for the low earth orbit (LEO) satellite-based TEC conversion. This study is to examine the applicability of three mapping functions for LEO-based GNSS observations. Two IEH calculating methods, namely the centroid method based on the definition of the centroid and the integral method based on one half of the total integral, are discussed. It is found that the IEHs increase linearly with the orbit altitudes ranging from 400 to 1400 km. Model simulations are used to compare the vertical TEC converted by these mapping functions and the vertical TEC directly calculated by the model. Our results illustrate that the F&K (Foelsche and Kirchengast) geometric mapping function together with the IEH from the centroid method is more suitable for the LEO-based TEC conversion, though the thin layer model along with the IEH of the integral method is more appropriate for the ground-based vertical TEC retrieval.

Details

ISSN :
15211886 and 10805370
Volume :
20
Database :
OpenAIRE
Journal :
GPS Solutions
Accession number :
edsair.doi...........44193de7c888da974a6e41c521368df6
Full Text :
https://doi.org/10.1007/s10291-015-0444-6