9 citations · 9 across the 4 of their papers we have counts for
5 papers
Machine Learning Algorithms for Transplanting Accelerometer Observations in Future Satellite Gravimetry Missions
Mohsen Romeshkani, Jürgen Müller, Sahar Ebadi +4
Accurate and continuous monitoring of Earth's gravity field is essential for tracking mass redistribution processes linked to climate variability, hydrological cycles, and geodynam…
Evaluation of Deployable Solar Panels on GRACE-like Satellites by Closed-Loop Simulations
Andreas Leipner, Alexey Kupriyanov, Arthur Reis +6
Future satellite gravimetry missions seek to surpass the performance of CHAMP, GOCE, GRACE, and GRACE-FO to meet increasing scientific and operational demands. These missions will…
Combined Classical and Quantum Accelerometers For the Next Generation of Satellite Gravity Missions
Alireza HosseiniArani, Manuel Schilling, Benjamin Tennstedt +7
Cold atom interferometry (CAI)-based quantum accelerometers are very promising for future satellite gravity missions thanks to their strength in providing long-term stable and prec…
Advances in Atom Interferometry and their Impacts on the Performance of Quantum Accelerometers On-board Future Satellite Gravity Missions
Alireza HosseiniArania, Manuel Schilling, Quentin Beaufils +6
Recent advances in cold atom interferometry have cleared the path for space applications of quantum inertial sensors, whose level of stability is expected to increase dramatically…
Benefit of enhanced electrostatic and optical accelerometry for future gravimetry missions
Alexey Kupriyanov, Arthur Reis, Manuel Schilling +2
Twenty years of gravity observations from various satellite missions have provided unique data about mass redistribution processes in the Earth system. This paper studies the benef…