Journal of Geodesy· 2026Q1
Multi-facility GNSS antenna calibration
- 0citations
- Q1SCImago
- 2026year
Short summary
An international inter-comparison of nine GNSS antenna calibration facilities found frequency- and elevation-dependent variations up to 3-4 mm at low elevations, with Topcon, NGS, and WHU showing good agreement with IGS-accepted facilities.
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Key points
- Multi-GNSS antenna calibrations show frequency- and elevation-dependent variations up to 3-4 mm at low elevations.
- Topcon, NGS, and WHU calibration results agree well with IGS-accepted facilities (GPP, IfE, GA).
- Differences in antenna calibrations result in position deviations of a few millimeters, mainly in the Up component.
- Six different antenna designs were calibrated across nine facilities and compared to the Geo++ robot solution (GPP4).
AI-generated from the title and abstract; the full text is not read.
Abstract
Abstract Accurate antenna calibrations are a cornerstone of high-quality global navigation satellite systems (GNSS) positioning, time and frequency transfer, precise orbits, and troposphere estimates. The international GNSS service (IGS) antenna committee maintains antenna phase center corrections in the ANTEX file relying on five calibration facilities. Since new calibration facilities have been set up and user demands have grown along with hardware and software updates of GNSS, we organized an international inter-comparison across nine facilities, using both anechoic chambers and field robots. Six antennas with different designs were calibrated by each facility and compared with the Geo++ robot solution (GPP4), a proxy for the IGS ANTEX. Where available, we also considered the IGS type means. We examined differences between the antenna patterns and subsequent differences in station coordinates. To this end, we used a standardized forward simulation as well as multi-GNSS PPP solutions using the GNSS toolbox developed at Leibniz University Hannover, Institut für Erdmessung (IfE). Our study yields several important results. We found that multi-GNSS antenna calibrations exhibit frequency- and elevation-dependent variations, with deviations of up to 3 mm to 4 mm at low elevations. We show that organizations like Topcon (TPS), national geodetic survey (NGS), and Wuhan GNSS Research Center (WHU) yield calibration results that are in very good agreement with those of IGS accepted facilities such as GPP, IfE, and to some extent geoscience Australia (GA). These differences result in position deviations of a few millimeters, with the Up component being the dominant contributor.
The authors' abstract, as published at the source. Journal of Geodesy, 2026 · DOI ↗
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Field: Aerospace Engineering
Aerospace EngineeringEngineering