Global Navigation Satellite Systems for Ionospheric Error Correction in Radio-Engineering Systems: Challenges and Prospects
Global navigation satellite systems (GNSS), such as GPS, GLONASS, Galileo, and Bei-Dou/Compass are widely used for solving a variety of research and applied problems. This work considers the use of GNSS signals for monitoring of the ionosphere to provide an ionospheric error correction in radio-engi...
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Veröffentlicht in: | Radiophysics and quantum electronics 2020-08, Vol.63 (3), p.177-190 |
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description | Global navigation satellite systems (GNSS), such as GPS, GLONASS, Galileo, and Bei-Dou/Compass are widely used for solving a variety of research and applied problems. This work considers the use of GNSS signals for monitoring of the ionosphere to provide an ionospheric error correction in radio-engineering systems in quasireal time. The problems arising in this case, among which the absolute ionospheric parameter estimation is the key problem, are discussed. |
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subjects | Artificial satellites Astronomy Astrophysics and Astroparticles Atmosphere, Upper Error correction Error correction & detection Global navigation satellite system Hadrons Heavy Ions Ionosphere Lasers Mathematical and Computational Physics Navigation satellites Nuclear Physics Observations and Techniques Optical Devices Optics Parameter estimation Photonics Physics Physics and Astronomy Quantum Optics Satellite navigation systems Signal monitoring Theoretical |
title | Global Navigation Satellite Systems for Ionospheric Error Correction in Radio-Engineering Systems: Challenges and Prospects |
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