Based on the data from dual-frequency receivers of global navigation satellite systems (GNSS), we analyze the changes in GNSS positioning accuracy during the August 25-26, 2018 strong geomagnetic storm on a global scale. The storm is one of the strongest geomagnetic events of the solar cycle 24. To analyze the positioning quality, we calculated coordinates using the precise point positioning (PPP) method in the kinematic mode. We recorder a significant degradation in the PPP positioning accuracy during the main phase of the storm. The maximum effect is observed in the middle and high latitudes of the US-Atlantic longitude sector. The average PPP error during the storm is shown to exceed ~0.5 m, that is up to 5 times higher than the values t...
Global positioning system (GPS) satellites operate at 1.2 and 1.5 GHz. The GPS signals travel throug...
138-146<span style="font-size:11.0pt;mso-bidi-font-size: 10.0pt;font-family:" times="" new="" roman...
The energetic events on the sun, solar wind and subsequent effects on the Earth's geomagnetic field...
The geomagnetic storm, which is an abnormal space weather phenomenon, can sometimes severely affect ...
In this work, we present the positioning error analysis of the 12 May 2021 moderate geomagnetic stor...
In this study, we focus on the kinematic precise point positioning (PPP) solutions at high-latitudes...
Ionospheric irregularities impair Global Navigation Satellite System (GNSS) signals and, in turn, af...
Space weather effects are generally recognized as causes of degradation of satellite positioning, na...
Operation quality of the Global Navigation Satellite Systems (GNSS) appreciably depends on condition...
This work investigates the positioning error of five Nigeria GNSS network stations during the geomag...
International audienceUsing data of GPS receivers located worldwide, we analyze the quality of GPS p...
In early September 2017, several space weather events triggered disturbed conditions of the near-Ea...
International audienceWe use ground-based (GNSS, SuperDARN, and ionosondes) and space-borne (Swarm, ...
In this paper, we propose a new method to quantitatively evaluate the quality of the carrier phase o...
At high latitudes, above 60° N, in the vicinity of the auroral oval, the ionosphere frequently exper...
Global positioning system (GPS) satellites operate at 1.2 and 1.5 GHz. The GPS signals travel throug...
138-146<span style="font-size:11.0pt;mso-bidi-font-size: 10.0pt;font-family:" times="" new="" roman...
The energetic events on the sun, solar wind and subsequent effects on the Earth's geomagnetic field...
The geomagnetic storm, which is an abnormal space weather phenomenon, can sometimes severely affect ...
In this work, we present the positioning error analysis of the 12 May 2021 moderate geomagnetic stor...
In this study, we focus on the kinematic precise point positioning (PPP) solutions at high-latitudes...
Ionospheric irregularities impair Global Navigation Satellite System (GNSS) signals and, in turn, af...
Space weather effects are generally recognized as causes of degradation of satellite positioning, na...
Operation quality of the Global Navigation Satellite Systems (GNSS) appreciably depends on condition...
This work investigates the positioning error of five Nigeria GNSS network stations during the geomag...
International audienceUsing data of GPS receivers located worldwide, we analyze the quality of GPS p...
In early September 2017, several space weather events triggered disturbed conditions of the near-Ea...
International audienceWe use ground-based (GNSS, SuperDARN, and ionosondes) and space-borne (Swarm, ...
In this paper, we propose a new method to quantitatively evaluate the quality of the carrier phase o...
At high latitudes, above 60° N, in the vicinity of the auroral oval, the ionosphere frequently exper...
Global positioning system (GPS) satellites operate at 1.2 and 1.5 GHz. The GPS signals travel throug...
138-146<span style="font-size:11.0pt;mso-bidi-font-size: 10.0pt;font-family:" times="" new="" roman...
The energetic events on the sun, solar wind and subsequent effects on the Earth's geomagnetic field...