Transient signal loss of the global positioning system (GPS) has been frequently observed by receivers on board the European Space Agency's Swarm mission when the satellites encounter ionospheric plasma irregularities. In this study we provided the first comparison of the GPS signal amplitude degradations from receivers on board low Earth orbiting satellites at different altitudes. Intense carrier phase variations but almost no amplitude fades (less than 2 dB Hz) are observed when the spaceborne receiver lies right inside the ionospheric plasma irregularities, like the case for the Swarm and CHAMP satellites flying at about 400–500 km. This indicates that the strong phase variation, but not the amplitude fades, causes the receivers to stop ...
Natural hazards and geomagnetic disturbances can generate a combination of atmospheric and ionospher...
Space weather can adversely affect accuracy, reliability and availability of global navigation satel...
Scintillation is one of the most challenging problems in Global Navigation Satellite Systems (GNSS) ...
Our society is becoming increasingly dependent on Global Navigation Satellite Systems (GNSS), such a...
Electromagnetic radio waves transmitted from satellites of Global Navigation Satellite Systems (GNSS...
By using 3-year global positioning system (GPS) measurements from December 2013 to November 2016, w...
[1] Ionospheric scintillations are one of the earliest known effects of space weather. Caused by ion...
The ionosphere region plays an active role in the complex space weather relationships. So a permanen...
The performance of navigational receivers using satellite-based navigation technology can be severel...
peer reviewedThe performance of navigational receivers using satellite-based navigation technology c...
To face important societal challenges like sea level variations, climate change and natural hazards ...
It has been shown that ionospheric irregularities can disturb our GNSS (Global Navigation Satellite ...
It has been shown that ionospheric irregularities can disturb our GNSS (Global Navigation Satellite ...
Space weather effects on Global Navigation Satellite Systems (GNSS) are predominately associated wit...
Space weather effects on Global Navigation Satellite Systems (GNSS) are predominately associated wit...
Natural hazards and geomagnetic disturbances can generate a combination of atmospheric and ionospher...
Space weather can adversely affect accuracy, reliability and availability of global navigation satel...
Scintillation is one of the most challenging problems in Global Navigation Satellite Systems (GNSS) ...
Our society is becoming increasingly dependent on Global Navigation Satellite Systems (GNSS), such a...
Electromagnetic radio waves transmitted from satellites of Global Navigation Satellite Systems (GNSS...
By using 3-year global positioning system (GPS) measurements from December 2013 to November 2016, w...
[1] Ionospheric scintillations are one of the earliest known effects of space weather. Caused by ion...
The ionosphere region plays an active role in the complex space weather relationships. So a permanen...
The performance of navigational receivers using satellite-based navigation technology can be severel...
peer reviewedThe performance of navigational receivers using satellite-based navigation technology c...
To face important societal challenges like sea level variations, climate change and natural hazards ...
It has been shown that ionospheric irregularities can disturb our GNSS (Global Navigation Satellite ...
It has been shown that ionospheric irregularities can disturb our GNSS (Global Navigation Satellite ...
Space weather effects on Global Navigation Satellite Systems (GNSS) are predominately associated wit...
Space weather effects on Global Navigation Satellite Systems (GNSS) are predominately associated wit...
Natural hazards and geomagnetic disturbances can generate a combination of atmospheric and ionospher...
Space weather can adversely affect accuracy, reliability and availability of global navigation satel...
Scintillation is one of the most challenging problems in Global Navigation Satellite Systems (GNSS) ...