Ionospheric scintillation is the physical phenomena affecting radio waves propagating from the space through the ionosphere to earth. The signal distortion induced by scintillation can pose a major threat to some GNSS application. Scintillation is one of the more challenging propagation scenarios, particularly affecting high-precision GNSS receivers which require high quality carrier phase measurements; and safety critical applications which have strict accuracy, availability and integrity requirements. Under ionospheric scintillation conditions, GNSS signals are affected by fast amplitude and phase variations, which can compromise the receiver synchronization. To take into account the underlying correlation among different frequency bands,...
Abstract—Ionospheric scintillations are known to affect both the magnitude and the phase of the inco...
Ionospheric scintillation is one of the most challenging sources of errors in global navigation sate...
In this article, we propose a new centralized multi-frequency carrier tracking architecture using an...
Ionospheric scintillation is the physical phenomena affecting radio waves propagating from the space...
Ionospheric scintillation is the physical phenomena affecting radio waves propagating from the space...
Ionospheric scintillation is the physical phenomena affecting radio waves propagating from the space...
In Global Navigation Satellite Systems (GNSS), ionospheric scintillation is one of the more challeng...
This letter deals with carrier synchronization in Global Navigation Satellite Systems. The main goal...
This contribution deals with robust carrier phase tracking in Global Navigation Satellite Systems, w...
Ionospheric scintillation is the name given to the disturbance caused by electron density irregulari...
Strong ionospheric electron content gradients may lead to fast and unpredictable fluctuations in the...
Ionospheric scintillation is one of the major threats and most challenging propagation scenarios aff...
Strong ionospheric electron content gradients may lead to fast and unpredictable fluctuations in the...
Strong ionospheric electron content gradients may lead to fast and unpredictable fluctuations in the...
Abridged due to PUBSY limitations (see attached abstract): GNSS-based studies of the ionosphere are ...
Abstract—Ionospheric scintillations are known to affect both the magnitude and the phase of the inco...
Ionospheric scintillation is one of the most challenging sources of errors in global navigation sate...
In this article, we propose a new centralized multi-frequency carrier tracking architecture using an...
Ionospheric scintillation is the physical phenomena affecting radio waves propagating from the space...
Ionospheric scintillation is the physical phenomena affecting radio waves propagating from the space...
Ionospheric scintillation is the physical phenomena affecting radio waves propagating from the space...
In Global Navigation Satellite Systems (GNSS), ionospheric scintillation is one of the more challeng...
This letter deals with carrier synchronization in Global Navigation Satellite Systems. The main goal...
This contribution deals with robust carrier phase tracking in Global Navigation Satellite Systems, w...
Ionospheric scintillation is the name given to the disturbance caused by electron density irregulari...
Strong ionospheric electron content gradients may lead to fast and unpredictable fluctuations in the...
Ionospheric scintillation is one of the major threats and most challenging propagation scenarios aff...
Strong ionospheric electron content gradients may lead to fast and unpredictable fluctuations in the...
Strong ionospheric electron content gradients may lead to fast and unpredictable fluctuations in the...
Abridged due to PUBSY limitations (see attached abstract): GNSS-based studies of the ionosphere are ...
Abstract—Ionospheric scintillations are known to affect both the magnitude and the phase of the inco...
Ionospheric scintillation is one of the most challenging sources of errors in global navigation sate...
In this article, we propose a new centralized multi-frequency carrier tracking architecture using an...