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GPS Receiver Demonstration on a Galileo Test Bed Satellite

Published online by Cambridge University Press:  09 August 2007

Takuji Ebinuma
Affiliation:
(Surrey Space Centre, University of Surrey)
Martin Unwin*
Affiliation:
(Surrey Satellite Technology Ltd)
*

Abstract

GPS receivers have been used successfully on low Earth orbit (LEO) satellite missions for several years. The use of a GPS receiver at altitudes higher than LEO, however, is non-trivial as the receiver will be outside the main lobe of the GPS broadcast signals, and it will have to track signals from GPS satellites transmitting from the other side of the Earth. This paper will review the special hardware and software adaptations required for GPS receiver operations on a medium Earth orbit or geostationary satellite, along with preliminary results from simulations and an in-orbit experiment.

Type
Research Article
Copyright
Copyright © The Royal Institute of Navigation 2007

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References

REFERENCES

Akos, D. M., Normark, P. L., Lee, J. T., Gromov, K. G., Tsui, J. B. Y. and Schamus, J. (2000). Low Power Global Navigation Satellite System (GNSS) Signal Detection and Processing. Proceedings of ION GPS 2000, Salt Lake City, Utah.Google Scholar
Balbach, O., Eisheller, B., Hein, G. W., Zink, T., Enderle, W., Schmidhuber, M. and Lemke, N. (1998). Tracking GPS Above GPS Satellite Altitude: Results of the GPS Experiment on the HEO Mission Equator-S. Proceedings of ION GPS 98, Nashville, Tennessee.CrossRefGoogle Scholar
Bandecchi, M. and Ockels, W. J. (1998). The TEAMSAT Experience. ESA Bulletin, No. 95.Google Scholar
Cronman, J. D. (2000). Experience Using GPS for Orbit Determination of a Geosynchronous Satellite. Proceedings of ION GPS 2000, Salt Lake City, Utah.Google Scholar
Coulson, P. and Shave, N. P. (1996). The GPS at GEO Experiment. Proceedings of the 3rd ESA International Conference on Spacecraft Guidance, Navigation and Control System, Noordwijk, The Netherlands.Google Scholar
Czopek, F. M. and Shellenberger, S. (1993). Description and Performance of the GPS Block I and II L-Band Antenna and Link Budget. Proceedings of ION GPS 93, Salt Lake City, Utah.Google Scholar
Falcone, M., Lugert, M., Malik, M., Crisci, M., Rooney, C. E., Jackson, C. and Trethewey, M., “Giove-A In Orbit Testing Results”, ION GNSS 2006, Fort Worth, TX, September 26–29, 2006.Google Scholar
Moreau, M. C., Axelrad, P., Garrison, J. L. and Long, A. (2000). GPS Receiver Architecture and Expected Performance for Autonomous Navigation in High Earth Orbits. Navigation, Vol. 47, No. 3, pp. 191204.CrossRefGoogle Scholar
Moreau, M. C., Davis, E. P., Carpenter, J. R., Kelbel, D., Davis, G. W. and Axelrad, P. (2002). Results from the GPS flight Experiment on the High Earth Orbit AMSAT OSCAR-40 Spacecraft. Proceedings of ION GPS 2002, Portland, Oregon.Google Scholar
Powell, T. D., Martzen, P. D., Sedlacek, S. B., Chao, C., Silva, R., Brown, A. and Belle, G. (1999). GPS Signals in a Geosynchronous Transfer Orbit: Falcon Gold Data Processing. Proceedings of ION National Technical Meeting, San Diego, California.Google Scholar
Rooney, E., Paffett, J., Unwin, M. and Garutti, A. (2004). Status of GSTB-V2/A Satellite Programme, Proceeding of ION GNSS 2004, Long Beach, California.Google Scholar
Steenwijk, R. de Vos Van, Unwin, M. J., Hashida, Y., Blunt, P., Weiler, R., Navitec 2006, 11–13 December 2006, ESA/Estec, Noordwijk.Google Scholar
Underwood, C., Unwin, M. J., Sorensen, R. H., Frydland, A. and Jameson, P. (2004). Radiation Testing Campaign for a New Miniaturised Space GPS Receiver. Proceedings of IEEE Nuclear and Space Radiation Effects Conference, Atlanta, Georgia.CrossRefGoogle Scholar
Unwin, M. J. and Oldfield, M. K. (2000). The Design and Operation of a COTS Space GPS Receiver, Proceedings of the 23rd Annual AAS Guidance and Control Conference, Breckenridge, Colorado.Google Scholar
Winternitz, L., Moreau, M. and Boegner, G. J. (2004). Navigator GPS Receiver for Fast Acquisition and Weak Signal Space Applications. Proceedings of ION GNSS 2004, Long Beach, California.Google Scholar