GENESIS: Co-location of Geodetic Techniques in Space
Pac\^ome Delva, Zuheir Altamimi, Alejandro Blazquez, Mathis Blossfeld,, Johannes B\"ohm, Pascal Bonnefond, Jean-Paul Boy, Sean Bruinsma, Grzegorz, Bury, Miltiadis Chatzinikos, Alexandre Couhert, Cl\'ement Courde, Rolf Dach,, V\'eronique Dehant, Simone Dell'Agnello

TL;DR
The GENESIS mission aims to co-locate multiple space geodetic techniques on a single satellite to improve the accuracy and stability of the Terrestrial Reference Frame, benefiting Earth sciences and navigation.
Contribution
It proposes a novel space platform integrating all four geodetic techniques to enhance TRF accuracy and resolve inter-technique biases.
Findings
Potential to achieve 1mm accuracy in TRF
Improved consistency among geodetic techniques
Enhanced long-term stability of geodetic measurements
Abstract
Improving and homogenizing time and space reference systems on Earth and, more directly, realizing the Terrestrial Reference Frame (TRF) with an accuracy of 1mm and a long-term stability of 0.1mm/year are relevant for many scientific and societal endeavors. The knowledge of the TRF is fundamental for Earth and navigation sciences. For instance, quantifying sea level change strongly depends on an accurate determination of the geocenter motion but also of the positions of continental and island reference stations, as well as the ground stations of tracking networks. Also, numerous applications in geophysics require absolute millimeter precision from the reference frame, as for example monitoring tectonic motion or crustal deformation for predicting natural hazards. The TRF accuracy to be achieved represents the consensus of various authorities which has enunciated geodesy requirements for…
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Taxonomy
TopicsGNSS positioning and interference · Inertial Sensor and Navigation · Geophysics and Gravity Measurements
