The aim of this study is to investigate the performance of a method based on improving the stochastic model to mitigate ionospheric scintillation effects on GNSS positioning by processing experimental data from GISTM (GPS Ionospheric Scintillation and TEC Monitor) receivers, which are capable of computing amplitude and phase scintillation parameters from GPS signals. We applied the approach to mitigate ionospheric scintillation effects on GNSS positioning, in conjunction with the estimation of an ionospheric parameter, considered as a stochastic process. This approach produced, in a single epoch point positioning solution, an improvement on height and 3D accuracy of the order of 31% and of 45%, respectively, when applied in a northern high ...
In early September 2017, several space weather events triggered disturbed conditions of the near-Ea...
We analyse GNSS ionospheric scintillation data recorded in Antarctica to investigate the conditions ...
© 2020, The Author(s). Global navigation satellite systems (GNSS) underpin a number of modern life a...
Ionospheric scintillations are caused by timevarying electron density irregularities in the ionosphe...
Ionospheric scintillations are caused by time-varying electron density irregularities in the ionosph...
We analyse GNSS ionospheric scintillation data recorded in Antarctica to investigate the conditions ...
Ionospheric conditions at low latitudes are extremely harsh due to the frequent occurrence ofscintil...
Global Navigation Satellite Systems (GNSS), in particular the Global Positioning System (GPS), have ...
Ionospheric conditions at low latitudes are extremely harsh due to the frequent occurrence of scinti...
Ionospheric conditions at low latitudes are extremely harsh due to the frequent occurrence of scinti...
Ionospheric conditions at low latitudes are extremely harsh due to the frequent occurrence of scinti...
Ionospheric conditions at low latitudes are extremely harsh due to the frequent occurrence of scinti...
Global Navigation Satellite Systems (GNSS), in particular the Global Positioning System (GPS), have ...
The ionosphere has always been a major limitation for GNSS positioning applications. Free electrons ...
The ionosphere has always been a major limitation for GNSS positioning applications. Free electrons ...
In early September 2017, several space weather events triggered disturbed conditions of the near-Ea...
We analyse GNSS ionospheric scintillation data recorded in Antarctica to investigate the conditions ...
© 2020, The Author(s). Global navigation satellite systems (GNSS) underpin a number of modern life a...
Ionospheric scintillations are caused by timevarying electron density irregularities in the ionosphe...
Ionospheric scintillations are caused by time-varying electron density irregularities in the ionosph...
We analyse GNSS ionospheric scintillation data recorded in Antarctica to investigate the conditions ...
Ionospheric conditions at low latitudes are extremely harsh due to the frequent occurrence ofscintil...
Global Navigation Satellite Systems (GNSS), in particular the Global Positioning System (GPS), have ...
Ionospheric conditions at low latitudes are extremely harsh due to the frequent occurrence of scinti...
Ionospheric conditions at low latitudes are extremely harsh due to the frequent occurrence of scinti...
Ionospheric conditions at low latitudes are extremely harsh due to the frequent occurrence of scinti...
Ionospheric conditions at low latitudes are extremely harsh due to the frequent occurrence of scinti...
Global Navigation Satellite Systems (GNSS), in particular the Global Positioning System (GPS), have ...
The ionosphere has always been a major limitation for GNSS positioning applications. Free electrons ...
The ionosphere has always been a major limitation for GNSS positioning applications. Free electrons ...
In early September 2017, several space weather events triggered disturbed conditions of the near-Ea...
We analyse GNSS ionospheric scintillation data recorded in Antarctica to investigate the conditions ...
© 2020, The Author(s). Global navigation satellite systems (GNSS) underpin a number of modern life a...