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A Global Terrestrial Reference Frame from simulated VLBI and SLR data in view of GGOS
Authors:Susanne Glaser  Rolf König  Dimitrios Ampatzidis  Tobias Nilsson  Robert Heinkelmann  Frank Flechtner  Harald Schuh
Institution:1.Institute of Geodesy and Geoinformation Science,Technische Universit?t Berlin,Berlin,Germany;2.GFZ German Research Centre for Geosciences,Oberpfaffenhofen,Germany;3.Federal Agency for Cartography and Geodesy (BKG),Frankfurt am Main,Germany;4.GFZ German Research Centre for Geosciences,Potsdam,Germany
Abstract:In this study, we assess the impact of two combination strategies, namely local ties (LT) and global ties (GT), on the datum realization of Global Terrestrial Reference Frames in view of the Global Geodetic Observing System requiring 1 mm-accuracy. Simulated Very Long Baseline Interferometry (VLBI) and Satellite Laser Ranging (SLR) data over a 7 year time span was used. The LT results show that the geodetic datum can be best transferred if the precision of the LT is at least 1 mm. Investigating different numbers of LT, the lack of co-located sites on the southern hemisphere is evidenced by differences of 9 mm in translation and rotation compared to the solution using all available LT. For the GT, the combination applying all Earth rotation parameters (ERP), such as pole coordinates and UT1-UTC, indicates that the rotation around the Z axis cannot be adequately transferred from VLBI to SLR within the combination. Applying exclusively the pole coordinates as GT, we show that the datum can be transferred with mm-accuracy within the combination. Furthermore, adding artificial stations in Tahiti and Nigeria to the current VLBI network results in an improvement in station positions by 13 and 12%, respectively, and in ERP by 17 and 11%, respectively. Extending to every day VLBI observations leads to 65% better ERP estimates compared to usual twice-weekly VLBI observations.
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