DocumentCode
61086
Title
Calibration of galileo signals for time metrology
Author
Defraigne, Pascale ; Aerts, Wim ; Cerretto, Giancarlo ; Cantoni, Elena ; Sleewaegen, Jean-Marie
Author_Institution
R. Obs. of Belgium, Brussels, Belgium
Volume
61
Issue
12
fYear
2014
fDate
Dec. 2014
Firstpage
1967
Lastpage
1975
Abstract
Using global navigation satellite system (GNSS) signals for accurate timing and time transfer requires the knowledge of all electric delays of the signals inside the receiving system. GNSS stations dedicated to timing or time transfer are classically calibrated only for Global Positioning System (GPS) signals. This paper proposes a procedure to determine the hardware delays of a GNSS receiving station for Galileo signals, once the delays of the GPS signals are known. This approach makes use of the broadcast satellite inter-signal biases, and is based on the ionospheric delay measured from dual-frequency combinations of GPS and Galileo signals. The uncertainty on the so-determined hardware delays is estimated to 3.7 ns for each isolated code in the L5 frequency band, and 4.2 ns for the ionosphere-free combination of E1 with a code of the L5 frequency band. For the calibration of a time transfer link between two stations, another approach can be used, based on the difference between the common-view time transfer results obtained with calibrated GPS data and with uncalibrated Galileo data. It is shown that the results obtained with this approach or with the ionospheric method are equivalent.
Keywords
Global Positioning System; calibration; ionospheric techniques; time measurement; GNSS stations; GPS signals; Galileo signal calibration; Global Positioning System signals; L5 frequency band; accurate timing; broadcast satellite intersignal biases; dual-frequency combinations; global navigation satellite system signals; hardware delays; ionosphere-free combination; ionospheric delay measurement; time metrology; time transfer link; Calibration; Delays; Hardware; Receiving antennas; Satellite broadcasting; Satellites;
fLanguage
English
Journal_Title
Ultrasonics, Ferroelectrics, and Frequency Control, IEEE Transactions on
Publisher
ieee
ISSN
0885-3010
Type
jour
DOI
10.1109/TUFFC.2014.006649
Filename
6968692
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