Satellite-/block-/plane- and constellation-specific GNSS LOD biases

17 Sept 2026
Room C 62 b
3.3.1 Earth in motion: observation systems, reference systems, Earth rotation, geodynamics
Length of Day (LOD) describes variations in the duration of a single Earth rotation relative to the standard 24 hours. It is an important Earth Orientation Parameter (EOP) linking the International Celestial Reference Frame (ICRF) and the International Terrestrial Reference Frame (ITRF). For space geodetic satellite techniques (GNSS, SLR, and DORIS), the estimation of LOD is highly correlated with the precession of the satellite orbital ascending node, which is largely driven by the even low-degree spherical harmonic coefficients of the Earth gravity field (i.e. Earth flattening) and is also sensitive to orbit modeling deficiencies, such as out-of-plane empirical accelerations or solar radiation pressure (SRP). In the case of SLR and DORIS, LOD estimation benefits from combining observations from multiple satellites with clear different orbital inclinations. Due to the different inclinations of the various satellites, SLR- and DORIS-derived LOD estimates are less correlated with other parameters which results in less biased LOD values. The five GNSS constellations GPS, Galileo, GLONASS, BeiDou and QZSS have a similiar orbit inclination, which leads to modelling deficiencies resulting in biased GNSS-based LOD estimates.Up to know, this was not handled or a long-term constant (constellation-independent) bias was determined and applied at NEQ level. In this presentation, we evaluate various LOD solutions computed from different groups of satellites (including different satellite blocks, orbital planes, and constellations) and different SRP models. The evaluation allows to determine the best SRP model for each group. Implementing the best SRP model for each group improves the GNSS determination of EOP. Co-Authors: Mathis Bloßfeld, Bingbing Duan, Urs Hugentobler
Session Moderator
Robert Heinkelmann
Dr. Robert Heinkelmann, Leiter Arbeitsgruppe "Kombination und VLBI", 1.1 Geodätische Weltraumverfahren - GFZ - Helmoltz-Zentrum für Geoforschung
Speakers
Jacob Klug
Jacob Klug, PhD Student - Deutsches Geodätisches Forschungsinstitut, TU München

Tags

Frontiers of Geodetic Science,GNSS

Language

Englisch // English