Users of the Global Positioning System (GPS) utilize the Ionospheric Correction Algorithm (ICA) also known as Klobuchar model for correcting ionospheric signal delay or range error. Recently, we developed an ionosphere correction algorithm called NTCM-Klobpar model for single frequency GNSS applications. The model is driven by a parameter computed from GPS Klobuchar model and consecutively can be used instead of the GPS Klobuchar model for ionospheric corrections. In the presented work we compare the positioning solutions obtained using NTCM-Klobpar with those using the Klobuchar model. Our investigation using worldwide ground GPS data from a quiet and a perturbed ionospheric and geomagnetic activity period of 17 days each shows that the 24...
Modelling of the ionospheric Total Electron Content (TEC) represents a challenging and demanding tas...
Modelling of the ionospheric Total Electron Content (TEC) represents a challenging and demanding tas...
A method is proposed to improve the GPS broadcast ionospheric time-delay correction accuracy, using ...
Users of the Global Positioning System (GPS) utilize the Ionospheric Correction Algorithm (ICA) also...
Users of the Global Positioning System (GPS) utilize the Ionospheric Correction Algorithm (ICA) also...
Users of the Global Positioning System (GPS) utilize the Ionospheric Correction Algorithm (ICA) also...
Users of the Global Positioning System (GPS) utilize the Ionospheric Correction Algorithm (ICA) also...
Global Navigation Satellite Systems (GNSS) require mitigation of ionospheric propagation errors beca...
Global Navigation Satellite Systems (GNSS) require mitigation of ionospheric propagation errors beca...
In Global Navigation Satellite Systems (GNSS) using L band frequencies, the ionosphere causes signal...
Broadcast Ionospheric Correction Algorithms (ICA) are used in Global Navigation Satellite System (G...
The ionosphere is a significant error source of the Global Navigation Satellite Systems (GNSS) error...
Transionospheric navigation and radar systems operating at single frequencies of less than 10 GHz ar...
In GNSS, one of the main error sources of the Standard Positioning Service (SPS) is introduced by th...
The ionosphere is recognized as a major error source for single frequency operations of Global Navig...
Modelling of the ionospheric Total Electron Content (TEC) represents a challenging and demanding tas...
Modelling of the ionospheric Total Electron Content (TEC) represents a challenging and demanding tas...
A method is proposed to improve the GPS broadcast ionospheric time-delay correction accuracy, using ...
Users of the Global Positioning System (GPS) utilize the Ionospheric Correction Algorithm (ICA) also...
Users of the Global Positioning System (GPS) utilize the Ionospheric Correction Algorithm (ICA) also...
Users of the Global Positioning System (GPS) utilize the Ionospheric Correction Algorithm (ICA) also...
Users of the Global Positioning System (GPS) utilize the Ionospheric Correction Algorithm (ICA) also...
Global Navigation Satellite Systems (GNSS) require mitigation of ionospheric propagation errors beca...
Global Navigation Satellite Systems (GNSS) require mitigation of ionospheric propagation errors beca...
In Global Navigation Satellite Systems (GNSS) using L band frequencies, the ionosphere causes signal...
Broadcast Ionospheric Correction Algorithms (ICA) are used in Global Navigation Satellite System (G...
The ionosphere is a significant error source of the Global Navigation Satellite Systems (GNSS) error...
Transionospheric navigation and radar systems operating at single frequencies of less than 10 GHz ar...
In GNSS, one of the main error sources of the Standard Positioning Service (SPS) is introduced by th...
The ionosphere is recognized as a major error source for single frequency operations of Global Navig...
Modelling of the ionospheric Total Electron Content (TEC) represents a challenging and demanding tas...
Modelling of the ionospheric Total Electron Content (TEC) represents a challenging and demanding tas...
A method is proposed to improve the GPS broadcast ionospheric time-delay correction accuracy, using ...