Under perturbed conditions coming from the outer space, the ionosphere may become highly turbulent and small scale (from centimeters to meters) irregularities, typically enhancements or depletions of the electron density embedded in the ambient ionosphere, can form causing diffraction effects on the satellites signals passing through them. Such effect can abruptly corrupt the performance of the positioning systems affecting, in turn, the awareness and safety of the modern devices. In this paper we analyze data of ionospheric scintillation in the latitudinal range 57°- 88° N during the period October, November and December 2003 as a first step to develop a “scintillation climatology” over the Northern Europe. The behavior of the scintillatio...
A comparison tool has been developed by mapping the global GPS total electron content (TEC) and larg...
A comparison tool has been developed by mapping the global GPS total electron content (TEC) and larg...
Under perturbed conditions caused by intense solar wind-magnetosphere coupling, the ionosphere may b...
We analyze data of ionospheric scintillation in the geographic latitudinal range 44°–88° N during th...
Under perturbed conditions coming from the outer space, the ionosphere may become highly turbulent a...
We analyse GNSS ionospheric scintillation data in the polar areas of both hemispheres to develop a c...
We analyze data of ionospheric scintillation in the geographic latitudinal range 44°–88° N ...
We analyse GNSS ionospheric scintillation data recorded in Antarctica to investigate the conditions ...
Abstract. We analyze data of ionospheric scintillation in the geographic latitudinal range 44◦–88 ◦ ...
Arrays of GPS Ionospheric Scintillation and TEC Monitors (GISTMs) are used in a comparative scintill...
Due to the configuration of the Earth’s magnetic field and its reconnection with the Interplanetary ...
During the ascending phase of solar cycle 24, a series of interplanetary coronal mass ejections (ICM...
During the ascending phase of solar cycle 24, a series of interplanetary coronal mass ejections (ICM...
During the ascending phase of solar cycle 24, a series of interplanetary coronal mass ejections (ICM...
A comparison tool has been developed by mapping the global GPS total electron content (TEC) and larg...
A comparison tool has been developed by mapping the global GPS total electron content (TEC) and larg...
A comparison tool has been developed by mapping the global GPS total electron content (TEC) and larg...
Under perturbed conditions caused by intense solar wind-magnetosphere coupling, the ionosphere may b...
We analyze data of ionospheric scintillation in the geographic latitudinal range 44°–88° N during th...
Under perturbed conditions coming from the outer space, the ionosphere may become highly turbulent a...
We analyse GNSS ionospheric scintillation data in the polar areas of both hemispheres to develop a c...
We analyze data of ionospheric scintillation in the geographic latitudinal range 44°–88° N ...
We analyse GNSS ionospheric scintillation data recorded in Antarctica to investigate the conditions ...
Abstract. We analyze data of ionospheric scintillation in the geographic latitudinal range 44◦–88 ◦ ...
Arrays of GPS Ionospheric Scintillation and TEC Monitors (GISTMs) are used in a comparative scintill...
Due to the configuration of the Earth’s magnetic field and its reconnection with the Interplanetary ...
During the ascending phase of solar cycle 24, a series of interplanetary coronal mass ejections (ICM...
During the ascending phase of solar cycle 24, a series of interplanetary coronal mass ejections (ICM...
During the ascending phase of solar cycle 24, a series of interplanetary coronal mass ejections (ICM...
A comparison tool has been developed by mapping the global GPS total electron content (TEC) and larg...
A comparison tool has been developed by mapping the global GPS total electron content (TEC) and larg...
A comparison tool has been developed by mapping the global GPS total electron content (TEC) and larg...
Under perturbed conditions caused by intense solar wind-magnetosphere coupling, the ionosphere may b...