The data processing and analysis for the CE-5T1 GNSS experiment

Author:

Liu Huicui,Cao Jianfeng,Cheng Xiao,Peng Jing,Tang Geshi

Funder

National Natural Science Foundation of China

Publisher

Elsevier BV

Subject

Space and Planetary Science,Aerospace Engineering,General Earth and Planetary Sciences,Atmospheric Science,Geophysics,Astronomy and Astrophysics

Reference28 articles.

1. Balbach, O., Eissfeller, B., Hein, G., et al., 1998. Tracking GPS above GPS satellite altitude: first results of the GPS experiment on the HEO mission Equator-S. In: Proceedings of IEEE PLANS, Palm Spring, CA, pp. 243–249.

2. Bamford, W., Heckler, G., Holt, G., et al., 2008. A GPS receiver for lunar missions. In: Proceedings of ION NTM 08 Conference, San Diego, CA, pp. 268–276.

3. GOCE: precise orbit determination for the entire mission;Bock;J. Geod.,2014

4. Brown, A., Mathews, B., 2007. Constrained beamforming for space GPS navigation. In: Proceedings of ION GNSS 2007, Ft. Worth, TX, pp. 2357–2363.

5. Czopek, F., 1993. Description and performance of the GPS Block I and II L-band antenna and link budget. In: Proceedings of ION GPS 93, Salt Lake City, UT, pp. 37–43.

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