DocumentCode :
3489787
Title :
Plasmaspheric Electron Content contribution inferred from ground and radio occultation derived Total Electron Content
Author :
Angel, Angela Aragon ; Sanz, Jaume ; Juan, Jose Miguel ; Pajares, Manuel Hernandez ; Altadill, David
Author_Institution :
Res. group of Astron. & Geomatics, Tech. Univ. of Catalonia, Barcelona, Spain
fYear :
2012
fDate :
1-3 Aug. 2012
Firstpage :
257
Lastpage :
262
Abstract :
The FORMOSAT-3/COSMIC satellite constellation has become an important source of remote sensing data globally distributed for the sounding of the atmosphere of the Earth and, in particular, the ionosphere. In this study, electron density profiles derived using the Improved Abel transform inversion in Radio Occultation (RO) scenarios are used as input data to derive some features regarding the topside and outside ionospheric contribution, hence, the plasmasphere in great extend, by means of the analysis of the integral values of the shape functions corresponding to each density profile. The novelty presented in this paper, with respect to previous works, is the use of experimental data from the FORMOSAT-3/COSMIC RO-derived electron densities to infer global characterizations and distribution of the Total Electron Content (TEC) into its main components: ionospheric TEC and plasmaspheric TEC, both contributing to TEC. The results show agreement with earlier modeled and observational data from previous local studies of the plasmaspheric contribution. The main conclusion of this research is that the plasmasphere contributes significantly to TEC and the ratio between plasmaspheric TEC and TEC has been climatologically analyzed for the whole year 2007 confirming that the major relative impact of the plasmasphere is during night time. The added value of this study is that the results obtained are globally distributed and can help to infer a proxy for the plasmaspheric contribution at any location over the globe thanks to the FORMOSAT-3/COSMIC coverage.
Keywords :
remote sensing; satellite communication; FORMOSAT-3/COSMIC RO-derived electron densities; FORMOSAT-3/COSMIC satellite constellation; ground occultation; ionosphere; ionospheric TEC; plasmasphere; plasmaspheric TEC; plasmaspheric electron content contribution; radio occultation; remote sensing data; total electron content; Data models; Extrapolation; Global Positioning System; Ionosphere; Low earth orbit satellites; Shape; Transforms; Abel transform; FORMOSAT-3/COSMIC; GPS; Ionosphere; Plasmasphere; Separability; TEC; electron density; radio occultation;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Communications and Electronics (ICCE), 2012 Fourth International Conference on
Conference_Location :
Hue
Print_ISBN :
978-1-4673-2492-2
Type :
conf
DOI :
10.1109/CCE.2012.6315908
Filename :
6315908
Link To Document :
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