A new ionospheric model called NTCM G (Neustrelitz TEC Model) is now available on the European GNSS Service Centre (GSC) website (https://www.gsc-europa.eu/news/) for correcting ionospheric delay of single-frequency Galileo signals. Investigation shows that NTCM G requires less computing resources compared to the existing reference NeQuick G model while providing a good performance to single-frequency Galileo users. NTCM G does not replace the NeQuick G, but offers an alternative with reduced computational load and complexity for certain users. The NTCM G model was developed by the German Aerospace Centre (DLR) and validated by the Joint Research Centre (JRC) of the European Commission with the support of the European Space Agency (ESA). Th...
At present most low-cost GNSS receivers operate one frequency in the L band. For them one of the lar...
The ionosphere plays a crucial role in Global Navigation Satellite Systems (GNSS) accuracy. This ele...
Transionospheric navigation and radar systems operating at single frequencies of less than 10 GHz ar...
The European Global Navigation Satellite System (GNSS) Galileo uses the NeQuick-G model to compensat...
Europe’s Global Navigation Satellite System (GNSS) Galileo broadcasts three parameters for ionospher...
Europe’s Global Navigation Satellite System (GNSS) Galileo broadcasts three parameters for ionospher...
Europe’s Global Navigation Satellite System (GNSS) Galileo broadcasts three parameters for ionospher...
Europe’s Global Navigation Satellite System (GNSS) Galileo broadcasts three parameters for ionospher...
Europe’s Global Navigation Satellite System (GNSS) Galileo broadcasts three parameters for ionospher...
The ionosphere is recognized as a major error source for single frequency operations of Global Navig...
Europe’s Global Navigation Satellite System (GNSS) Galileo broadcasts three parameters for ionospher...
We propose an alternative ionospheric correction approach for single frequency Galileo users. In the...
We propose an alternative ionospheric correction approach for single frequency Galileo users. In the...
The ionosphere is a significant error source of the Global Navigation Satellite Systems (GNSS) error...
At present most low-cost GNSS receivers operate one frequency in the L band. For themone of the larg...
At present most low-cost GNSS receivers operate one frequency in the L band. For them one of the lar...
The ionosphere plays a crucial role in Global Navigation Satellite Systems (GNSS) accuracy. This ele...
Transionospheric navigation and radar systems operating at single frequencies of less than 10 GHz ar...
The European Global Navigation Satellite System (GNSS) Galileo uses the NeQuick-G model to compensat...
Europe’s Global Navigation Satellite System (GNSS) Galileo broadcasts three parameters for ionospher...
Europe’s Global Navigation Satellite System (GNSS) Galileo broadcasts three parameters for ionospher...
Europe’s Global Navigation Satellite System (GNSS) Galileo broadcasts three parameters for ionospher...
Europe’s Global Navigation Satellite System (GNSS) Galileo broadcasts three parameters for ionospher...
Europe’s Global Navigation Satellite System (GNSS) Galileo broadcasts three parameters for ionospher...
The ionosphere is recognized as a major error source for single frequency operations of Global Navig...
Europe’s Global Navigation Satellite System (GNSS) Galileo broadcasts three parameters for ionospher...
We propose an alternative ionospheric correction approach for single frequency Galileo users. In the...
We propose an alternative ionospheric correction approach for single frequency Galileo users. In the...
The ionosphere is a significant error source of the Global Navigation Satellite Systems (GNSS) error...
At present most low-cost GNSS receivers operate one frequency in the L band. For themone of the larg...
At present most low-cost GNSS receivers operate one frequency in the L band. For them one of the lar...
The ionosphere plays a crucial role in Global Navigation Satellite Systems (GNSS) accuracy. This ele...
Transionospheric navigation and radar systems operating at single frequencies of less than 10 GHz ar...