The comparative research of the influence of different types of auroral particle precipitation and polar cap patches (PCPs) on the global positioning system (GPS) signals disturbances in the polar ionosphere was done. For this purpose, we use the GPS scintillation receivers at Ny-Ålesund and Skibotn, operated by the University of Oslo. The presence of the auroral particle precipitation and polar cap patches was determined by using data from the EISCAT 42m radar on Svalbard. The optical aurora observations in 557.7 and 630.0 nm spectrum lines on Svalbard were used as well for the detection of ionospheric disturbances. The cusp identification was done with using SuperDARN (Hankasalmi) data. We consider events when the simultaneous EISCAT ...
In this paper we study how GPS, GLONASS, and Galileo navigation signals are compromised by strong ir...
The global positioning system (GPS) phase scintillation caused by high-latitude ionospheric irregula...
The ionosphere region plays an active role in the complex space weather relationships. So a permanen...
We present two examples from the cusp ionosphere over Svalbard, where poleward moving auroral forms ...
Under perturbed conditions caused by intense solar wind-magnetosphere coupling, the ionosphere may b...
We directly compare the relative GPS scintillation levels associated with regions of enhanced plasma...
This paper investigates the relative scintillation level associated with cusp dynamics (including pr...
The ionosphere is characterized by a highly variable degree of ionization maintained by a wide range...
This paper presents research on polar cap ionosphere space weather phenomena conducted during the Eu...
The climatology map of the GPS phase scintillation at high latitudes identifies two regions of high ...
Arrays of GPS Ionospheric Scintillation and TEC Monitors (GISTMs) are used in a comparative scintill...
AbstractWe present the results of scintillation studies based on the data obtained during the first ...
High-rate sampling data of GNSS (Global Navigation Satellite Systems) ionospheric scintillation acqu...
The global positioning system (GPS) phase scintillation caused by high-latitude ionospheric irregula...
Global positioning system scintillation and total electron content (TEC) data have been collected b...
In this paper we study how GPS, GLONASS, and Galileo navigation signals are compromised by strong ir...
The global positioning system (GPS) phase scintillation caused by high-latitude ionospheric irregula...
The ionosphere region plays an active role in the complex space weather relationships. So a permanen...
We present two examples from the cusp ionosphere over Svalbard, where poleward moving auroral forms ...
Under perturbed conditions caused by intense solar wind-magnetosphere coupling, the ionosphere may b...
We directly compare the relative GPS scintillation levels associated with regions of enhanced plasma...
This paper investigates the relative scintillation level associated with cusp dynamics (including pr...
The ionosphere is characterized by a highly variable degree of ionization maintained by a wide range...
This paper presents research on polar cap ionosphere space weather phenomena conducted during the Eu...
The climatology map of the GPS phase scintillation at high latitudes identifies two regions of high ...
Arrays of GPS Ionospheric Scintillation and TEC Monitors (GISTMs) are used in a comparative scintill...
AbstractWe present the results of scintillation studies based on the data obtained during the first ...
High-rate sampling data of GNSS (Global Navigation Satellite Systems) ionospheric scintillation acqu...
The global positioning system (GPS) phase scintillation caused by high-latitude ionospheric irregula...
Global positioning system scintillation and total electron content (TEC) data have been collected b...
In this paper we study how GPS, GLONASS, and Galileo navigation signals are compromised by strong ir...
The global positioning system (GPS) phase scintillation caused by high-latitude ionospheric irregula...
The ionosphere region plays an active role in the complex space weather relationships. So a permanen...