- Combination strategy for consistent final, rapid and predicted Earth rotation parameters. Journal of Geodesy 97 (1), 2023 mehr… BibTeX Volltext ( DOI )
- Impacts of frequency-dependent instrument noise for next-generation gravimetric mission on determining temporal gravity field model. Journal of Geodesy 97 (3), 2023 mehr… BibTeX Volltext ( DOI )
- The impacts of reducing atmospheric and oceanic de-aliasing model error on temporal gravity field model determination. Geophysical Journal International 234 (1), 2023, 210-227 mehr… BibTeX Volltext ( DOI )
- Small satellite formations and constellations for observing sub-daily mass changes in the Earth system. Geophysical Journal International 234 (3), 2023, 1550-1567 mehr… BibTeX Volltext ( DOI )
- Mission design aspects for the mass change and geoscience international constellation (MAGIC). Geophysical Journal International 235 (1), 2023, 718-735 mehr… BibTeX Volltext ( DOI )
- Combination of Geometric and Gravimetric Datasets for the Estimation of High-Resolution Mass Balances of the Greenland Ice Sheet. Geophysical Journal International, 2023 mehr… BibTeX Volltext ( DOI )
- GENESIS: co-location of geodetic techniques in space. Earth, Planets and Space 75 (1), 2023 mehr… BibTeX Volltext ( DOI )
- In-Orbit Performance of the GRACE Accelerometers and Microwave Ranging Instrument. Remote Sensing 15 (3), 2023, 563 mehr… BibTeX Volltext ( DOI )
- Space Gravity Missions: CHAMP, GRACE, GRACE-FO, and GOCE, Satellite Projects. In: Encyclopedia of Geodesy. Springer International Publishing, 2023 mehr… BibTeX Volltext ( DOI )
- Triple-frequency PPP-AR model comparison from the user perspective: combined and uncombined models. IEEE Symposium on Position Location and Navigation (PLANS), 2023 mehr… BibTeX Volltext ( DOI )
- Performance of Galileo satellite products determined from multi-frequency measurements. Journal of Geodesy 97 (4), 2023 mehr… BibTeX Volltext ( DOI )
- Assessment of a near-polar pair mission for detecting the Earth's temporal gravity field. Geophysical Journal International 234 (2), 2023, 852-869 mehr… BibTeX Volltext ( DOI )
- Bayerisches Satellitennetzwerk für Fernerkundung und Biomonitoring. zfv – Zeitschrift für Geodäsie, Geoinformation und Landmanagement (4/2023), 2023, 219-229 mehr… BibTeX Volltext ( DOI )
- Satellite range finding by photon counting against optical time ruler. Quantum Optics and Photon Counting 2023, SPIE, 2023 mehr… BibTeX Volltext ( DOI )
- Geodesy. De Gruyter (5th, completely revised edition. Aufl.), 2023 mehr… BibTeX Volltext ( DOI )
- Efficient variance component estimation for large-scale least-squares problems in satellite geodesy. Journal of Geodesy 96 (2), 2022 mehr… BibTeX Volltext ( DOI )
- Characterization and stabilization of the downward continuation problem for airborne gravity data. Journal of Geodesy 96 (4), 2022 mehr… BibTeX Volltext ( DOI )
- Potential of UT1–UTC transfer to the Galileo constellation using onboard VLBI transmitters. Journal of Geodesy 96 (10), 2022 mehr… BibTeX Volltext ( DOI )
- A new parallel algorithm for improving the computational efficiency of multi-GNSS precise orbit determination. GPS Solutions 26 (3), 2022 mehr… BibTeX Volltext ( DOI )
- Revisiting Force Model Error Modeling in GRACE Gravity Field Recovery. Surveys in Geophysics, 2022 mehr… BibTeX Volltext ( DOI )
- Geosynchronous satellites expanding a future GNSS satellite constellation: A precise orbit determination study. Advances in Space Research, 2022 mehr… BibTeX Volltext ( DOI )
- The GOP Analysis Center: DORIS contribution to ITRF2020. Advances in Space Research, 2022 mehr… BibTeX Volltext ( DOI )
- Ground-based laser momentum transfer concept for debris collision avoidance. Journal of Space Safety Engineering 9 (4), 2022, 612-624 mehr… BibTeX Volltext ( DOI )
- A proposed network of gamma-ray burst detectors on the global navigation satellite system <i>Galileo</i> G2. Astronomy & Astrophysics 664, 2022, A131 mehr… BibTeX Volltext ( DOI )
- Data-driven multi-step self-de-aliasing approach for GRACE and GRACE-FO data processing. Geophysical Journal International 232 (2), 2022, 1006-1030 mehr… BibTeX Volltext ( DOI )
Ingenieurinstitut für Astronomische und Physikalische Geodäsie

In stillem Gedenken an unseren lieben Kollegen und Freund Matthias Graf.
In silent memory of our dear colleague and friend Matthias Graf.
Das Ingenieurinstitut besteht aus:

Lehrstuhl für Astronomische und Physikalische Geodäsie
Univ.-Prof. Dr.techn. Mag.rer.nat. Roland Pail

Professur für Satellitengeodäsie
Univ.-Prof. Dr.phil.nat. Urs Hugentobler