GNSS scale determination using calibrated receiver and Galileo satellite antenna patterns

[1]  Rolf Dach,et al.  Overview of CODE’s MGEX solution with the focus on Galileo , 2020, Advances in Space Research.

[2]  REFAG 2014: Proceedings of the IAG Commission 1 Symposium Kirchberg, Luxembourg, 13–17 October, 2014 , 2017 .

[3]  Grant Hausler,et al.  The International GNSS Service , 2017 .

[4]  Axel Nothnagel,et al.  International VLBI Service for Geodesy and Astrometry , 2017, Journal of Geodesy.

[5]  Ralf Schmid,et al.  IGS14/igs14.atx: a new framework for the IGS products , 2016 .

[6]  Z. Altamimi,et al.  ITRF2014: A new release of the International Terrestrial Reference Frame modeling nonlinear station motions , 2016 .

[7]  S. Bruni Combination of GNSS and SLR measurements : contribution to the realization of the terrestrial reference frame , 2016 .

[8]  Peter Steigenberger,et al.  Estimation of satellite antenna phase center offsets for Galileo , 2016, Journal of Geodesy.

[9]  R. Dach,et al.  CODE final product series for the IGS , 2016 .

[10]  Peter Steigenberger,et al.  Impact of the arc length on GNSS analysis results , 2016, Journal of Geodesy.

[11]  R. Dach,et al.  Absolute IGS antenna phase center model igs08.atx: status and potential improvements , 2016, Journal of Geodesy.

[12]  Y. Bar-Sever,et al.  Realizing a terrestrial reference frame using the Global Positioning System , 2015 .

[13]  R. Dach,et al.  CODE’s new solar radiation pressure model for GNSS orbit determination , 2015, Journal of Geodesy.

[14]  Krzysztof Sośnica,et al.  Bernese GNSS Software , 2015 .

[15]  Paul Rebischung,et al.  Can GNSS contribute to improving the ITRF definition , 2014 .

[16]  B. Luzum,et al.  The International DORIS Service (IDS) - Recent Developments in Preparation for ITRF2013 , 2014 .

[17]  Jim R. Ray,et al.  Dependence of IGS Products on the ITRF Datum , 2013 .

[18]  Evaluation of the ITRF2008 GPS vertical velocities using satellite antenna z-offsets , 2013, GPS Solutions.

[19]  U. Hugentobler,et al.  Impact of Earth radiation pressure on GPS position estimates , 2012, Journal of Geodesy.

[20]  Xavier Collilieux,et al.  Impact of loading effects on determination of the International Terrestrial Reference Frame , 2010 .

[21]  P. Zeimetz,et al.  On the accuracy of absolute GNSS antenna calibration and the conception of a new Anechoic Chamber , 2008 .

[22]  Peter Steigenberger,et al.  Generation of a consistent absolute phase-center correction model for GPS receiver and satellite antennas , 2007 .

[23]  Harald Schuh,et al.  Troposphere mapping functions for GPS and VLBI from ECMWF operational analysis data , 2006 .

[24]  Ch. Reigber,et al.  Satellite antenna phase center offsets and scale errors in GPS solutions , 2003 .

[25]  Michael R Pearlman,et al.  THE INTERNATIONAL LASER RANGING SERVICE , 2007 .

[26]  Martin Schmitz,et al.  Automated Absolute Field Calibration of GPS Antennas in Real-Time , 2000 .

[27]  Martin Schmitz,et al.  Results of Absolute Field Calibration of GPS Antenna PCV , 1998 .

[28]  Thomas A. Herring,et al.  Effects of atmospheric azimuthal asymmetry on the analysis of space geodetic data , 1997 .

[29]  Martin Schmitz,et al.  A NEW APPROACH FOR FIELD CALIBRATION OF ABSOLUTE GPS ANTENNA PHASE CENTER VARIATIONS , 1997 .

[30]  E. Groten Geodesy and Astrometry , 1989 .