Assessment of Length-of-day and Universal Time Predictions Based on the Results of the Second Earth Orientation Parameters Prediction Comparison Campaign Justyna Śliwińska-Bronowicz , Tomasz Kur , Małgorzata Wińska , Henryk Dobslaw , Jolanta Nastula , Aleksander Partyka , Santiago Belda , Christian Bizouard , Dale Boggs , Sara Bruni , Lue Chen , Mike Chin , Sujata Dhar , Robert Dill , Jose Manuel Ferrandiz , Junyang Gou , Richard Gross , Sonia Guessoum , Songtao Han , Robert Heinkelmann , Christopher Irrgang , Mostafa Kiani Shahvandi , Jia Li , Marcin Ligas , Lintao Liu , Weitao Lu , Volker Mayer , Maciej Michalczak , Sadegh Modiri , Michiel Otten , Todd Ratcliff , Shrishail Raut , Jan Saynisch-Wagner , Matthias Schartner , Erik Schoenemann , Harald Schuh , Benedikt Soja , Xiaoqing Su , Daniela Thaller , Maik Thomas , Guocheng Wang , Yuanwei Wu , Xueqing Xu , Xinyu Yang , Xin Zhao , Zhijin Zhou Journal of Geodesy(2024)
Key words
Earth Orientation Parameters (EOP), Length-of-day (LOD), UT1‒UTC, Prediction
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