DocumentCode :
174634
Title :
A COMPASS ionospheric delay grid correction algorithm for China
Author :
Xiaokun Zhang ; Hong Yuan ; Mingguang Sun ; Yingkui Gong
Author_Institution :
Acad. of Opto-Electron., Beijing, China
fYear :
2014
fDate :
5-8 May 2014
Firstpage :
87
Lastpage :
94
Abstract :
A new ionospheric delay grid correction algorithm combining the advantages of global fitting and local interpolation algorithms for COMPASS system is presented. Firstly, COMPASS ionospheric vertical total electron content error analysis are made to get the main error influencing factors and the corresponding impacts, including the factors of COMPASS timing group delay parameter accuracy, receiver inter-frequency bias parameter accuracy, projection function of different types, pseudorange multipath error and random noise. Secondly, an effective measurement combination of COMPASS B1 and B2 common frequencies is selected, to eliminate the larger multipath error from GEO satellites geostationary features and improve VETC accuracy. Thirdly, an ionospheric delay grid correction algorithm is proposed to combine traditional global fitting and local interpolation algorithms, ensuring a suitable solvability and accuracy of ionospheric delay to grid points. Finally, the algorithm is validated using COMPASS measurement data. The results demonstrate that the average ionospheric delay grid correction accuracy is better than 0.5 meter throughout the day.
Keywords :
error analysis; interpolation; ionospheric techniques; random noise; satellite navigation; COMPASS B1 common frequency; COMPASS B2 common frequency; COMPASS ionospheric delay grid correction algorithm; COMPASS measurement data; COMPASS timing group delay parameter accuracy; China; GEO satellites geostationary features; error influencing factors; global fitting algorithm; grid points; local interpolation algorithms; multipath error; projection function; pseudorange multipath error; random noise; receiver inter-frequency bias parameter accuracy; total electron content error analysis; Accuracy; Compass; Delays; Fitting; Interpolation; Satellites; Surface fitting; COMPASS system; global fitting algorithm; grid point; ionospheric delay; local interpolation algorithm;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Position, Location and Navigation Symposium - PLANS 2014, 2014 IEEE/ION
Conference_Location :
Monterey, CA
Print_ISBN :
978-1-4799-3319-8
Type :
conf
DOI :
10.1109/PLANS.2014.6851361
Filename :
6851361
Link To Document :
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