We present first results of using the European Global Navigation Satellite System (GNSS) Galileo for determining the Total Electron Content (TEC). Furthermore, we describe a calibration technique which can be used to determine GNSS inter-frequency and inter-system biases along with calibrated TEC. This technique is demonstrated by analysing two sets of data. The first data set covers Europe using GPS and GLONASS data provided by IGS ground stations, and GPS and GIOVE (Galileo In Orbit Validation Element) data collected by GIOVE sensor stations (GESS). The second data set uses GPS and GIOVE data from a global network of GESS. We find that the inter-frequency and inter-system biases are stable within the accuracy of the reconstruction and t...
The European Galileo satellite navigation system offers a signal in space that will enable us to ded...
Dual-frequency Global Positioning System (GPS) receivers present a plausible and cost-effective way ...
The ionized upper portion of the atmosphere, the ionosphere, affects radio signals traveling between...
We present first results of using GIOVE-B data for determining the total electron content (TEC) over...
The upcoming GNSS Galileo, with its new satellite geometry and frequency plan, will not only bring m...
The world-wide use of Global Navigation Satellite Systems (GNSS) such as GPS and GLONASS offer the u...
Measurements of signals from Global Navigation Satellite Systems (GNSS) offer the possibility to an...
editorial reviewedGPS dual frequency L1/L2 measurements have been used for many years to reconstruct...
The modernization of the Global Positioning System (GPS) and the advent of the European Project Gali...
[1] As the number of ground-based and space-based receivers tracking the Global Positioning System (...
The Total Electron Content (TEC) of the ionosphere is a key parameter for describing the ionospheric...
Users of the global navigation satellite system (GNSS) operating with a single-frequencyreceiver mus...
This is a post-peer-review, pre-copyedit version of an article published in Gps solutions. The final...
Abstract. Triple frequency GNSS will be fully operational in the next few years, open-ing opportunie...
Global navigation satellite system signals are known to be an efficient tool to monitor the Earth io...
The European Galileo satellite navigation system offers a signal in space that will enable us to ded...
Dual-frequency Global Positioning System (GPS) receivers present a plausible and cost-effective way ...
The ionized upper portion of the atmosphere, the ionosphere, affects radio signals traveling between...
We present first results of using GIOVE-B data for determining the total electron content (TEC) over...
The upcoming GNSS Galileo, with its new satellite geometry and frequency plan, will not only bring m...
The world-wide use of Global Navigation Satellite Systems (GNSS) such as GPS and GLONASS offer the u...
Measurements of signals from Global Navigation Satellite Systems (GNSS) offer the possibility to an...
editorial reviewedGPS dual frequency L1/L2 measurements have been used for many years to reconstruct...
The modernization of the Global Positioning System (GPS) and the advent of the European Project Gali...
[1] As the number of ground-based and space-based receivers tracking the Global Positioning System (...
The Total Electron Content (TEC) of the ionosphere is a key parameter for describing the ionospheric...
Users of the global navigation satellite system (GNSS) operating with a single-frequencyreceiver mus...
This is a post-peer-review, pre-copyedit version of an article published in Gps solutions. The final...
Abstract. Triple frequency GNSS will be fully operational in the next few years, open-ing opportunie...
Global navigation satellite system signals are known to be an efficient tool to monitor the Earth io...
The European Galileo satellite navigation system offers a signal in space that will enable us to ded...
Dual-frequency Global Positioning System (GPS) receivers present a plausible and cost-effective way ...
The ionized upper portion of the atmosphere, the ionosphere, affects radio signals traveling between...