DocumentCode :
590056
Title :
GIM-ingested NeQuick model applied for GPS single frequency ionospheric correction in China
Author :
Ming Ou ; Hong-bo Zhang ; Dun Liu ; Xiao Yu ; Wei-Min Zhen
Author_Institution :
China Res. Inst. of Radiowave Propagation, Qingdao, China
fYear :
2012
fDate :
22-26 Oct. 2012
Firstpage :
652
Lastpage :
655
Abstract :
NeQuick is a semi-empirical model that describes spatial and temporal variations of the ionospheric electron density. This model will be used by the GALILEO single frequency user to compute ionospheric corrections. As a quick-run empirical model, NeQuick can only give the monthly mean variation of the ionosphere that will limit its application for real time single frequency ionospheric correction. However, NeQuick model provides flexible solutions for ingest ionospheric information obtained from various systems, from GNSS to ionosondes and topside sounders thanks to which NeQuick has been designed. The Global Ionosphere Maps (GIM) could be a robust and reliable data which suit for NeQuick model Ingestion. In this paper, the aim of this study is to show a preliminary assessment of the performance of the GIM-ingested NeQuick model apply in GPS Single Frequency Ionospheric Correction in China Region. GIM data are used to drive the NeQuick model for the effective ionization level which denoted by Az; While GPS observation data obtained from five stations in China region was used as metrics in this process. The results of the comparisons between GIM-ingested NeQuick and Klobuchar model are also analyzed; At last conclusions about the ionospheric correction performance of NeQuick in China region have been summed up.
Keywords :
Global Positioning System; ionospheric measuring apparatus; ionospheric techniques; China; GALILEO single frequency user; GIM-ingested NeQuick model; GPS observation data; GPS single frequency ionospheric correction; Klobuchar model; global ionosphere maps; ionization level; ionosondes; ionospheric electron density; quick-run empirical model; real-time single frequency ionospheric correction; semiempirical model; topside sounders; Accuracy; Adaptation models; Computational modeling; Data models; Global Navigation Satellite Systems; Global Positioning System; Ionosphere;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Antennas, Propagation & EM Theory (ISAPE), 2012 10th International Symposium on
Conference_Location :
Xian
Print_ISBN :
978-1-4673-1799-3
Type :
conf
DOI :
10.1109/ISAPE.2012.6408855
Filename :
6408855
Link To Document :
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