Publikationen vom Institut für Erdmessung

Bücher, Monografien

Begutachtete Zeitschriftenartikel, Bücher, Buchkapitel

2020


Schilling, M., Wodey, É., Timmen, L., Tell, D., Zipfel, K. H., Schlippert, D., Schubert, C., Rasel, E. M., & Müller, J. (2020). Gravity field modelling for the Hannover 10 m atom interferometer. Journal of Geodesy, 94(12), Artikel 122. https://doi.org/10.1007/s00190-020-01451-y, https://doi.org/10.15488/10717, https://doi.org/10.48550/arXiv.2003.04875
Timmen, L., Rothleitner, C., Reich, M., Schröder, S., & Cieslack, M. (2020). Investigation of Scintrex CG-6 Gravimeters in the Gravity Meter Calibration System Hannover. AVN Allgemeine Vermessungs-Nachrichten, 127(4), 155-162. https://gfzpublic.gfz-potsdam.de/pubman/item/item_5003300
Weise, A., Timmen, L., Deng, Z., Gabriel, G., Rothleitner, C., Schilling, M., & Voigt, C. (2020). Observing ocean mass variability with spring gravimeters: Storm surge induced signals on the north sea island helgoland. AVN Allgemeine Vermessungs-Nachrichten, 127(4), 163-173. https://gispoint.de/artikelarchiv/avn/2020/avn-ausgabe-042020/6608-observing-ocean-mass-variability-with-spring-gravimeters-storm-surge-induced-signals-on-the-north-sea-island-helgoland-federgravimeter-messen-massenverlagerungen-im-ozean-sturmflut-induzierte-signale-auf-der-nordseeinsel-helgoland.html
Zhang, M., Müller, J., & Biskupek, L. (2020). Test of the equivalence principle for galaxy’s dark matter by lunar laser ranging. Celestial Mechanics and Dynamical Astronomy, 132(4), Artikel 25. https://doi.org/10.1007/s10569-020-09964-6

2019


Behzadpour, S., Mayer-Gürr, T., Flury, J., Klinger, B., & Goswami, S. (2019). Multiresolution wavelet analysis applied to GRACE range-rate residuals. Geoscientific Instrumentation, Methods and Data Systems, 8(2), 197-207. https://doi.org/10.5194/gi-8-197-2019, https://doi.org/10.15488/5236
Jäggi, A., Weigelt, M., Flechtner, F., Güntner, A., Mayer-Gürr, T., Martinis, S., Bruinsma, S., Flury, J., Bourgogne, S., Steffen, H., Meyer, U., Jean, Y., Sušnik, A., Grahsl, A., Arnold, D., Cann-Guthauser, K., Dach, R., Li, Z., Chen, Q., ... Shabanloui, A. (2019). European Gravity Service for Improved Emergency Management (EGSIEM): from concept to implementation. Geophysical journal international, 218(3), 1572-1590. Artikel ggz238. https://doi.org/10.1093/gji/ggz238
Kermarrec, G., Neumann, I., Alkhatib, H., & Schon, S. (2019). The stochastic model for Global Navigation Satellite Systems and terrestrial laser scanning observations: A proposal to account for correlations in least squares adjustment. Journal of Applied Geodesy, 13(2), 93-104. https://doi.org/10.1515/jag-2018-0019
Lin, M., Denker, H., & Müller, J. (2019). A comparison of fixed- and free-positioned point mass methods for regional gravity field modeling. Journal of geodynamics, 125, 32-47. https://doi.org/10.1016/j.jog.2019.01.001
Lin, M., & Denker, H. (2019). On the computation of gravitational effects for tesseroids with constant and linearly varying density. Journal of geodesy, 93(5), 723-747. https://doi.org/10.1007/s00190-018-1193-4
Mai, E., Müller, J., & Oberst, J. (2019). Application of an evolution strategy in planetary ephemeris modeling. Advances in space research, 63(1), 728-749. https://doi.org/10.1016/j.asr.2018.09.011

Begutachtete Konferenzbeiträge

2017


Bochkati, M., Schön, S., Schlippert, D., Schubert, C., & Rasel, E. (2017). Could Cold Atom Interferometry Sensors be the Future Inertial Sensors? First Simulation Results. in G. F. Trommer (Hrsg.), 2017 DGON Inertial Sensors and Systems (ISS) (International Symposium on Inertial Sensors and Systems). Institute of Electrical and Electronics Engineers Inc.. https://doi.org/10.1109/inertialsensors.2017.8171500
Fernandez, N. G., & Schön, S. (2017). Development of a simulation tool for collaborative navigation systems. in 2017 14th Workshop on Positioning, Navigation and Communications (WPNC) (S. 1-6). Institute of Electrical and Electronics Engineers Inc.. https://doi.org/10.1109/wpnc.2017.8250074
Löcher, A., Hofmann, F., Gläser, P., Haase, I., Müller, J., Kusche, J., & Oberst, J. (2017). Towards improved lunar reference frames: LRO orbit determination. in T. V. Dam (Hrsg.), REFAG 2014 - Proceedings of the IAG Commission 1 Symposium (S. 201-206). (International Association of Geodesy Symposia; Band 146). Springer Verlag. https://doi.org/10.1007/1345_2015_146
Schilling, M., Timmen, L., & Kumme, R. (2017). The gravity field in force standard machines. in 23rd IMEKO TC3 Conference on Measurement of Force, Mass and Torque 2017: Measurement Facing New Challenges, Held Together with TC5 and TC22 (23rd IMEKO TC3 Conference on Measurement of Force, Mass and Torque 2017: Measurement Facing New Challenges, Held Together with TC5 and TC22; Band 2017-May). IMEKO-International Measurement Federation Secretariat.

2016


Kersten, T., & Schön, S. (2016). Receiver Antenna Phase Center Models and Their Impact on Geodetic Parameters. in L. Sanchez, & J. T. Freymueller (Hrsg.), International Symposium on Earth and Environmental Sciences for Future Generations - Proceedings of the IAG General Assembly (S. 253-259). (International Association of Geodesy Symposia; Band 147). Springer Verlag. https://doi.org/10.1007/1345_2016_233
Krawinkel, T., & Schön, S. (2016). Enhanced Multi-GNSS PVT Solution When Using Chip Scale Atomic Clocks. in Proceedings of the 29th International Technical Meeting of the Satellite Division of The Institute of Navigation (S. 200-208). Institute of Navigation. https://doi.org/10.33012/2016.14745
Lin, M., Denker, H., & Müller, J. (2016). Regional Gravity Field Modeling by Radially Optimized Point Masses: Case Studies with Synthetic Data. in C. Rizos, & P. Willis (Hrsg.), IAG 150 Years - Proceedings of the 2013 IAG Scientific Assembly (S. 233-239). (International Association of Geodesy Symposia). Springer Verlag. https://doi.org/10.1007/1345_2015_92
Shabanloui, A., & Müller, J. (2016). Mass Variations in the Siberian Permafrost Region Based on New GRACE Results and Auxiliary Modeling. in R. Barzaghi, & S. Jin (Hrsg.), IGFS 2014 - Proceedings of the 3rd International Gravity Field Service, IGFS 2014 (S. 189-197). (International Association of Geodesy Symposia; Band 144). Springer Verlag. https://doi.org/10.1007/1345_2015_186

2015


Bischof, C., & Schön, S. (2015). High-Rate GPS Velocity and Acceleration Determination in Highly Dynamic Flights. in Proceedings of the 28th International Technical Meeting of the Satellite Division of The Institute of Navigation (S. 3069-3076). Institute of Navigation. https://www.ion.org/sign-in.cfm
Krawinkel, T., Schön, S., & Bauch, A. (2015). Application of Miniaturized Atomic Clocks in Kinematic GNSS Single Point Positioning. in 2014 European Frequency and Time Forum (EFTF) (S. 97-100). Artikel 7331436 Institute of Electrical and Electronics Engineers Inc.. https://doi.org/10.1109/eftf.2014.7331436

Dissertationen

First 1 2 3 4 5 6 7 8 9

2004


Hirt, C. (2004). Entwicklung und Erprobung eines digitalen Zenitkamerasystems für die hochpräzise Lotabweichungsbestimmung. [Dissertation, Gottfried Wilhelm Leibniz Universität Hannover]. Fachrichtung für Vermessungswesen d. Univ. https://doi.org/10.15488/6367

2003


Menge, F. (2003). Zur Kalibrierung der Phasenzentrumsvariationen von GPS-Antennen für die hochpräzise Positionsbestimmung. [Dissertation, Gottfried Wilhelm Leibniz Universität Hannover]. Univ. Hannover, Fachber. Bauingenieur- u. Vermessungswesen. https://doi.org/10.15488/6229

Konferenzbeiträge (Paper, Poster, Präsentationen, Kurzfassungen)

2022


Hosseiniarani, A., Bertone, S., Arnold, D., Desprats, W., Peron, R., Jäggi, A., & Thomas, N. (2022). Combined recovery of accelerometer parameters, spacecraft orbit, and Mercury gravity field for the BepiColombo mission. https://ui.adsabs.harvard.edu/abs/2022cosp...44.3402H/abstract
HosseiniArani, S. A., Tennstedt, B., Schilling, M., Knabe, A., Beaufils, Q., Romeshkani, M., Wu, H., Kupriyanov, A., Dos Santos, F. P., Schön, S., & Müller, J. (2022). Improved Modeling for Hybrid Accelerometers Onboard Future Satellite Gravity Missions. Beitrag in COSPAR, Athen, Griechenland. https://elib.dlr.de/192268/
Karimidoona, A., Icking, L. L., Ruwisch, F., & Schön, S. (2022). On the Prediction of Network RTK Integrity Performance in Urban Environments. in On the Prediction of Network RTK Integrity Performance in Urban Environments (10th ESA Workshop on Satellite Navigation Technologies and European Workshop on GNSS Signals and Signal Processing (NAVITEC)).
Kersten, T., Schön, S., Kröger, J., & Breva, Y. (2022). GNSS Antenna Calibration Values as Bottleneck for Reliable Atmospheric Parameters. Abstract von American Geophysical Union (AGU) Fall Meeting 2022, Chicago, Illinois, USA / Vereinigte Staaten.
Kersten, T., Dawidowicz, K., Krzan, G., Kröger, J., & Schön, S. (2022). On the design of robust and consistent metrics for the stability of receiver antenna calibration sets. Abstract von International Association of Geodesy Commission 4 Syposium, Potsdam, Niedersachsen, Deutschland. https://doi.org/10.5194/iag-comm4-2022-25
Klemme, A., Warneke, T., Bovensmann, H., Weigelt, M., Müller, J., Notholt, J., & Lämmerzahl, C. (2022). Using satellite geodesy for carbon cycle research . in EGU General Assembly 2022 https://doi.org/10.5194/egusphere-egu22-7583
Kröger, J., Kersten, T., Breva, Y., & Schön, S. (2022). How Do Different Phase Center Correction Values Impact GNSS Reference Frame Stations?. Abstract von IAG International Symposium on Reference Frames for Applications in Geosciences (REFAG 2022), Thessaloniki, Griechenland. https://www.refag2022.org/wp-content/uploads/2022/10/83.pdf
Kröger, J., Kersten, T., Breva, Y., Brekenkamp, M., & Schön, S. (2022). Impact of Different Phase Center Correction Values on Geodetic Parameters: A Standardized Simulation Approach. in EGU General Assembly 2022 https://doi.org/10.5194/egusphere-egu22-1146
Kupriyanov, A., Reis, A., Leipner, A., Huckfeldt, M., Ebadi, S., Öhlinger, F., Müller, J., Müller, V., Schilling, M., List, M., Rievers, B., Weigelt, M., & Mayer-Gürr, T. (2022). Advancing Gravimetric Earth Observation with GRACE-FO & Future Missions. Abstract von Quantum Frontiers Day 2022, Langenhagen, Niedersachsen, Deutschland. Vorzeitige Online-Publikation.
Kupriyanov, A., Reis, A., Schilling, M., Müller, V., & Müller, J. (2022). Sensor and performance modelling of an optical accelerometer for future gravity field missions. Abstract von Quantum sensors and test of new physics 2022, Hannover, Deutschland. https://ui.adsabs.harvard.edu/abs/2022cosp...44.3031K/abstract

Zeitschriftenartikel, Berichte, Preprints

2018


Hosseiniarani, A., Bertone, S., Jaeggi, A., & Thomas, N. (2018). Improved modelling of BELA altimetry observation for MPO orbit reconstruction. in EGU General Assembly 2018 https://meetingorganizer.copernicus.org/EGU2018/EGU2018-10178.pdf
Kersten, T., Ren, L., & Schön, S. (2018). A Virtual Receiver Concept for Continuous GNSS based Navigation of Inland Vessels. in Proceedings of Navitec (2018), 5.-7. December 2018, Noordwijk, The Netherlands https://doi.org/10.15488/3898
SIMULTAN Research Group, Dahm, T., Rivalta, E., Maghsoudi, S., Al-Halbouni, D., Gabriel, G., Polom, U., Tschache, S., Weise, A., Schön, S., Timmen, L., Kersten, T., Becker, D., Deghani, A., Zaksek, K., Börner, F., Rücker, C., Mai, F., Kaufmann, G., ... Liebsch-Dürschner, T. (2018). Joint project SIMULTAN: Sinkhole characterization and monitoring with supplementing geophysical methods. in NCKRI Symposium 7: Proceedings of the 15th Multidisciplinary Conference on Sinkholes and the Engineering and Environmental Impacts of Karst and the 3rd Appalachian Karst Symposium (S. 315-322) https://doi.org/10.5038/9780991000982.1005
Lisdat, C., Müller, J., & Schmidt, P. O. (2018). Optische Uhren und ihre Anwendung in der Geodäsie. PTB - Mitteilungen Forschen und Prufen, 128(3), 17-25.
Olsson, P. A., Bilker-Koivula, M., Breili, K., Nielsen, E., Oja, T., Ophaug, V., Steffen, H., & Timmen, L. (2018). The secular, postglacial gravity change in Fennoscandia: observations and findings. in EGU General Assembly 2018 https://meetingorganizer.copernicus.org/EGU2018/EGU2018-7155-1.pdf
Schön, S. (2018). Recovering undifferenced GNSS observations from double differences – use and limits. in Festschrift zur Verabschiedung von Prof. Dr.-Ing. Dr. h.c. Bernhard Heck (Schw)Ehre, wem (Schw)Ehre gebührt (S. 245-253) https://doi.org/10.5445/KSP/1000080246
Weise, A., Gabriel, G., Kersten, T., Schön, S., Timmen, L., & Vogel, D. (2018). An integrative geodetic-gravimetrical approach to investigate subrosion in the sinkhole area of Hamburg Flottbek: surface deformation and mass redistribution. in EGU General Assembly 2018 https://doi.org/10.15488/3883
Weise, A., Gabriel, G., Kersten, T., Schön, S., Timmen, L., & Vogel, D. (2018). Ein integrativer geodätisch-gravimetrischer Ansatz zur Erkundung von Subrosion im Erdfallgebiet Hamburg Flottbek – Oberfächendeformation und Massentransfer. in 78. Jahrestagung der Deutschen Geophysikalischen Gesellschaft gemeinsam mit der Austrian Geophysical Society 12. - 15. Februar 2018 (S. 68)

2017


Kersten, T., & Schön, S. (2017). GNSS-Monitoring of Surface Displacements in Urban Environments. in Ingenieurvermessung 17 (S. 415-427) https://www.ife.uni-hannover.de/fileadmin/ife/publications/Ingenieurvermessung_17_KerstenEtal_FINAL.pdf
Kersten, T., & Schön, S. (2017). Precise Point Positioning mit GPS-Einfrequenz-Empfängern und der Radom-Antenne in Raisting für das Autonome Fahren (PPP-AF): AP 9: Bestimmung von Empfänger-Bias ; Schlussbericht zum BMWI Vorhaben 50NA1324. https://www.ife.uni-hannover.de/fileadmin/ife/publications/BMBF-50NA1324_VersionOnline.pdf

Software, Daten, sonstige Publikationen

  • Kersten T. (2025): The RINEX Dataset to the IGS Receiver Antenna Ring Calibration Campaign 2022-2024 (IGS RingCalVal)Leibniz University Hannover
    DOI: 10.5281/zenodo.16878951
  • Kersten, T., Bilich, A., Sutyagin, I., Schön, S., & Kröger, J. (2025): The ANTEX Dataset to the IGS Receiver Antenna Ring Calibration Campaign 2022-2024 (IGS RingCalVal)[Data set]. Leibniz University Hannover
    DOI: 10.5281/zenodo.16816983
  • Sedmik R. I. P., Abele H., Bosine J., Denker H., Jenke T., Micko J., Cranganore S.S., Timmen L., Trauner J. (2022): Weak Equivalence Principle Test with NeutronsDataset: Institut Laue-Langevin (ILL)
    DOI: 10.5291/ILL-DATA.3-14-415
  • Singh V.V., Biskupek L. (2022): Dataset: Earth Rotation Parameters from LLR with NPs for timespan 1970 - 2021Forschungsdaten-Repositorium der Leibniz Universität Hannover
    DOI: 10.25835/3h1r07a7
  • Koch I., Duwe M., Flury J., Shabanloui A. (2020): Dataset: LUH-GRACE-FO-2020Data Repository Leibniz University Hannover Weitere Informationen
    DOI: 10.25835/0062546
  • Meyer U., Lasser M., Jaeggi A., Dahle C., Flechtner F., Kvas A., Behzadpour S., Mayer-Gürr T., Lemoine J.-M., Koch I., Flury J., Bourgogne S. (2020): International Combination Service for Time-variable Gravity Fields (COST-G) Monthly GRACE-FO Series. V. 01GFZ Data Services Weitere Informationen
    DOI: 10.5880/ICGEM.COST-G.002
  • Kersten T., Schön S. (2019): Dataset: Urban GNSS campaigns from 2015-2017 in Hamburg Groß-Flottbek from SIMULTAN projectData Repositorium Leibniz University Hannover and Leibniz University IT Service (LUIS)
    DOI: 10.25835/0050677
  • Kersten T., Schön S. (2019): Dataset: Urban GNSS campaigns from 2015-2017 in Bad Frankenhausen (Thuringia) from SIMULTAN projectData Repositorium Leibniz University Hannover and Leibniz University IT Service (LUIS)
    DOI: 10.25835/0084648
  • Koch I., Naeimi M., Flury J., Shabanloui A. (2019): Dataset: LUH-GRACE2018Data Repository Leibniz University Hannover Weitere Informationen
    DOI: 10.25835/0022864
  • Kröger J., Breva Y., Kersten T., Schön S. (2019): Robot based phase centre corrections for new GNSS signalsData Repository Leibniz University Hannover and Leibniz University IT Service (LUIS)
    DOI: 10.25835/0075279
  • Kersten T., Paffenholz J.-A. (2018): Dataset: GNSS mass market and geodetic receiver benchmark studyData Repository Leibniz University Hannover and Leibniz University IT Service (LUIS)
    DOI: 10.25835/0034324
  • Kersten T., Schön S. (2018): Dataset: GPS code phase variations (CPV) for GNSS receiver antennasData Repositorium Leibniz University Hannover and Leibniz Uiversity IT Service (LUIS)
    DOI: 10.25835/0012492