Publications of the Institute of Geodesy

Books, monographs

Peer reviewed journal articles, books, book chapters

2024


HosseiniArani, A., Schilling, M., Beaufils, Q., Knabe, A., Tennstedt, B., Kupriyanov, A., Schön, S., Pereira dos Santos, F., & Müller, J. (2024). Advances in Atom Interferometry and their Impacts on the Performance of Quantum Accelerometers On-board Future Satellite Gravity Missions. Advances in space research, 74(7), 3186-3200. https://doi.org/10.1016/j.asr.2024.06.055
Klemme, A., Warneke, T., Bovensmann, H., Weigelt, M., Müller, J., Rixen, T., Notholt, J., & Lämmerzahl, C. (2024). Sediment transport in Indian rivers high enough to impact satellite gravimetry. Hydrology and Earth System Sciences, 28(7), 1527–1538. https://doi.org/10.5194/hess-2023-37, https://doi.org/10.5194/hess-2023-37-supplement
Klemme, A., Warneke, T., Bovensmann, H., Weigelt, M., Müller, J., Rixen, T., Notholt, J., & Lämmerzahl, C. (2024). Sediment transport in South Asian rivers high enough to impact satellite gravimetry. Hydrology and Earth System Sciences, 28(7), 1527–1538. https://doi.org/10.5194/hess-28-1527-2024
Koch, I., Duwe, M., & Flury, J. (2024). Residual and Unmodeled Ocean Tide Signal From 20+ Years of GRACE and GRACE-FO Global Gravity Field Models. Journal of Geophysical Research: Solid Earth, 129(9), Article e2024JB029345. https://doi.org/10.1029/2024JB029345
Kupriyanov, A., Reis, A., Schilling, M., Müller, V., & Müller, J. (2024). Benefit of enhanced electrostatic and optical accelerometry for future gravimetry missions. Advances in space research, 73(6), 3345-3362. https://doi.org/10.48550/arXiv.2310.14875, https://doi.org/10.1016/j.asr.2023.12.067
Meyer, U., Lasser, M., Dahle, C., Förste, C., Behzadpour, S., Koch, I., & Jäggi, A. (2024). Combined monthly GRACE-FO gravity fields for a Global Gravity-based Groundwater Product. Geophysical journal international, 236(1), 456-469. https://doi.org/10.1093/gji/ggad437, https://doi.org/10.48350/193577
Mu, Q., Müller, J., Wu, H., Knabe, A., & Zhong, M. (2024). Satellite gradiometry based on a new generation of accelerometers and its potential contribution to Earth gravity field determination. Advances in space research, 73(6), 3321-3344. https://doi.org/10.1016/j.asr.2023.08.023
O’Connor, M., Kersten, T., Skupin, C., Ruwisch, F., Ren, L., Wübbena, T., & Schön, S. (2024). Low-latency GNSS multipath simulation and building wall detection in urban environments. Simulation, 100(1), 71-89. https://doi.org/10.1177/00375497221145601
Vincent, A., & Müller, J. (2024). Detection of time variable gravity signals using terrestrial clock networks. Advances in Space Research, 73(6), 3312-3320. https://doi.org/10.1016/j.asr.2023.07.058
Voigt, C., Sulzbach, R., Dobslaw, H., Weise, A., Timmen, L., Deng, Z., Reich, M., Stolarczuk, N., Peters, H., Fietz, M., Thomas, M., & Flechtner, F. M. (2024). Non-tidal ocean loading signals of the North and Baltic Sea from terrestrial gravimetry, GNSS, and high-resolution modeling. Geophysical Research Letters, 51(13), Article e2024GL109262. https://doi.org/10.22541/essoar.171136797.71160253/v1, https://doi.org/10.1029/2024GL109262

Peer-reviewed conference papers

2023


Breva, Y., Kröger, J., Kersten, T., & Schön, S. (2023). Estimation and Validation of Codephase Center Correction using the Empirical Mode Decomposition. In J. T. Freymueller, & L. Sánchez (Eds.), Geodesy for a Sustainable Earth: Proceedings of the 2021 Scientific Assembly of the International Association of Geodesy, Beijing, China, June 28 - July 2, 2021 (pp. 333 - 343). Article 159 (International Association of Geodesy Symposia; Vol. 154). Springer Nature. https://doi.org/10.1007/1345_2022_159
HosseiniArani, S. A., Tennstedt, B., Schilling, M., Knabe, A., Wu, H., Schön, S., & Müller, J. (2023). Kalman-Filter Based Hybridization of Classic and Cold Atom Interferometry Accelerometers for Future Satellite Gravity Missions. In J. T. Freymueller, & L. Sánchez (Eds.), Geodesy for a Sustainable Earth - Proceedings of the 2021 Scientific Assembly of the International Association of Geodesy (pp. 221-231). (International Association of Geodesy Symposia; Vol. 154). Springer Nature. https://doi.org/10.1007/1345_2022_172
Jäggi, A., Meyer, U., Lasser, M., Jenny, B., Lopez, T., Flechtner, F., Dahle, C., Förste, C., Mayer-Gürr, T., Kvas, A., Lemoine, J. M., Bourgogne, S., Weigelt, M., & Groh, A. (2023). International Combination Service for Time-Variable Gravity Fields (COST-G): Start of Operational Phase and Future Perspectives. In J. T. Freymueller, & L. Sánchez (Eds.), Beyond 100: The Next Century in Geodesy - Proceedings of the IAG General Assembly, 2019 (pp. 57-65). (International Association of Geodesy Symposia; Vol. 152). Springer Science and Business Media Deutschland GmbH. https://doi.org/10.1007/1345_2020_109
Knabe, A., Schilling, M., Wu, H., Hosseiniarani, A., Müller, J., Beaufils, Q., & Pereira Dos Santos, F. (2023). The Benefit of Accelerometers Based on Cold Atom Interferometry for Future Satellite Gravity Missions. In J. T. Freymueller, & L. Sánchez (Eds.), Geodesy for a Sustainable Earth - Proceedings of the 2021 Scientific Assembly of the International Association of Geodesy (pp. 213-220). (International Association of Geodesy Symposia; Vol. 154). Springer Nature. https://doi.org/10.1007/1345_2022_151
Krawinkel, T., & Schön, S. (2023). On the Limits of State-of-the-Art GNSS Receivers in Frequency Transfer. In J. T. Freymueller, & L. Sánchez (Eds.), Geodesy for a Sustainable Earth - Proceedings of the 2021 Scientific Assembly of the International Association of Geodesy (pp. 313-319). (International Association of Geodesy Symposia; Vol. 154). Springer, Cham. https://doi.org/10.1007/1345_2022_145
Kröger, J., Kersten, T., Breva, Y., & Schön, S. (2023). On the Potential of Image Similarity Metrics for Comparing Phase Center Corrections. In J. T. Freymueller, & L. Sánchez (Eds.), Geodesy for a Sustainable Earth: Proceedings of the 2021 Scientific Assembly of the International Association of Geodesy, Beijing, China, June 28 – July 2, 2021 (pp. 345–357). (International Association of Geodesy Symposia; Vol. 154). https://doi.org/10.1007/1345_2022_146, https://doi.org/10.15488/16507
Lin, Q., & Schön, S. (2023). Feasibility of CSAC-Assisted GNSS Receiver Fingerprinting. In J. T. Freymueller, & L. Sánchez (Eds.), Gravity, Positioning and Reference Frames: Gravity, Geoid, and Height Systems 2022; IAG Commission 4: Positioning and Applications, 2022; REFAG2022: Reference Frames for Applications in Geosciences, 2022 (pp. 93-100). (International Association of Geodesy Symposia; Vol. 156). Springer, Cham. https://doi.org/10.1007/1345_2023_221
Ruwisch, F., & Schön, S. (2023). GNSS Feature Map Aided RTK Positioning in Urban Trenches. In 2023 IEEE 26th International Conference on Intelligent Transportation Systems (ITSC) (pp. 5798-5804). (IEEE Conference on Intelligent Transportation Systems). IEEE. https://doi.org/10.1109/itsc57777.2023.10422176
Su, J., Schön, S., & Joerger, M. (2023). Towards a set-based detector for GNSS integrity monitoring. In 2023 IEEE/ION Position, Location and Navigation Symposium (PLANS) (pp. 421-429). (IEEE/ION Position Location and Navigation Symposium). IEEE. https://doi.org/10.1109/PLANS53410.2023.10139987
Wziontek, H., Falk, R., Pálinkáš, V., Engfeldt, A., Glässel, J., Hellerschmied, A., Iacovone, D., Kostelecky, J., Reich, M., Timmen, L., Ullrich, C., Valluzzi, A., & Zehetmaier, B. (2023). Comparisons of Absolute Gravimeters as a Key Component of the International Terrestrial Gravity Reference Frame (ITGRF) Shown on the Example of the WET-CAG2021 at Wettzell, Germany. In J. T. Freymueller, & L. Sánchez (Eds.), Gravity, Positioning and Reference Frames - Proceedings of the IAG Symposia - GGHS2022: Gravity, Geoid, and Height Systems 2022; IAG Commission 4: Positioning and Applications, 2022; REFAG2022: Reference Frames for Applications in Geosciences, 2022 (pp. 29-36). (International Association of Geodesy Symposia; Vol. 156). Springer Science and Business Media Deutschland GmbH. https://doi.org/10.1007/1345_2023_226

Dissertations

2023


Knabe, A. (2023). New Concepts for Gravity Field Recovery using Satellites. [Doctoral thesis, Leibniz University Hannover]. Verlag der Bayerischen Akademie der Wissenschaften. https://publikationen.badw.de/en/049490086
Singh, V. V. (2023). Lunar Laser Ranging: Improved Modelling and Parameter Estimation. [Doctoral thesis, Leibniz University Hannover]. https://doi.org/10.15488/14298
Zhang, M. (2023). Characteristics and Benefits of Differential Lunar Laser Ranging. [Doctoral thesis, Leibniz University Hannover]. https://doi.org/10.15488/19427

2021


Darugna, F. (2021). Improving smartphone-based GNSS positioning using state space augmentation techniques. [Doctoral thesis, Leibniz University Hannover]. Leibniz Universität Hannover.
Dbouk, H. (2021). Alternative Integrity Measures Based on Interval Analysis and Set Theory. [Doctoral thesis, Leibniz University Hannover]. Leibniz Universität Hannover. https://publikationen.badw.de/en/047355182/pdf/CC%20BY

Conference contributions (papers, posters, presentations, abstracts)

2025


Zhu, Y., Schön, S., & Jahn, C. H. (2025). Analysis of Stability and Temperature Variations in SAPOS Reference Stations in Lower Saxony and Adjacent Regions between 2017 and 2020. In EGU General Assembly 2025 https://doi.org/10.5194/egusphere-egu25-21876

2024


Baasch, K.-N., & Schön, S. (2024). Opportunistic 5G NR Ranging in dense Urban Environments. NAVITEC 2024, Noordwijk, Netherlands. Advance online publication.
Bahadur, B., & Schön, S. (2024). An enhanced stochastic approach for code observations collected from Android smartphones. In EGU General Assembly 2024 https://doi.org/10.5194/egusphere-egu24-5540
Breva, Y., Kröger, J., Kersten, T., & Schön, S. (2024). How Observation Noise impacts the Estimation of Codephase- and Phase-Center Correction with a Robot in the Field. In EGU General Assembly 2024 https://doi.org/10.5194/egusphere-egu24-9080
Breva, Y., Addo, E., Caizzone, S., Kröger, J., Kersten, T., & Schön, S. (2024). MAESTRO: Understanding Multipath – Antenna – Receiver Interactions for Calibrating Code Phase Variations of GNSS Receiving Antennas. Poster session presented at IGS Symposium and Workshop 2024, Bern, Switzerland. Advance online publication.
Fletling, N., Knabe, A., Müller, J., Weigelt, M., & Schilling, M. (2024). Quantum-based Accelerometers for Satellite Gravimetry Missions. In EGU General Assembly 2024 https://doi.org/10.5194/egusphere-egu24-9463
HosseiniArani, S. A., Schilling, M., Beaufils, Q., Knabe, A., Tennstedt, B., Kupriyanov, A., Schön, S., Dos Santos, F. P., & Müller, J. (2024). Comprehensive In-orbit Performance Evaluation of Quantum Sensors for Future Satellite Gravity Missions and Space Navigation. Abstract from Gravity, Geoid and Height Systems 2024 Symposium, Thessaloniki, Greece.
Kersten, T., Bilich, A., Sutyagin, I., & Schön, S. (2024). A Global Collaboration to Enhance GNSS Receiver Antenna Calibration: The IGS Antenna Ring Campaign. In EGU General Assembly 2024 https://doi.org/10.15488/17174
Kersten, T., Bilich, A., Sutyagin, I., & Schön, S. (2024). A Global Collaboration to Enhance GNSS Receiver Antenna Calibration: The IGS Antenna Ring Campaign. In EGU General Assembly 2024 https://doi.org/10.5194/egusphere-egu24-17665
Kersten, T., Kröger, J., Breva, Y., Schön, S., Ramatschi, M., Bradke, M., & Männel, B. (2024). From Past to Present: Investigating Retrofitted GPS Antennas for Multi-GNSS Functionality. Poster session presented at IGS Symposium and Workshop 2024, Bern, Switzerland. https://doi.org/10.15488/17619

Journal articles, reports, preprints

2024


Lin, Q., Su, J., & Schön, S. (2024). Towards Integrity Monitoring for GNSS-Based Time Synchronization in Technical Applications. In European Navigation Conference 2024 (2024 ed., pp. 669 - 683 ). (Proceedings of the International Technical Meeting of the Satellite Division of The Institute of Navigation, ION GNSS+). https://doi.org/10.33012/2024.19740
Ruwisch, F., Kersten, T., & Schön, S. (2024). Schlussbericht des Instituts für Erdmessung (der Leibniz Universität Hannover) zum Verbundvorhaben Korrektur von GNSS-Mehrwegeffekten für die zuverlässige Eigenlokalisierung von hochautomatisierten Fahrzeugen in innerstädtischen Bereichen (KOMET). Leibniz Universität Hannover. https://doi.org/10.15488/17843
Skupin, C., Ruwisch, F., Kersten, T., O´Connor, M. C., Ren, L., Wübbena, T., Liu, Y., Schön, S., & Hinrichs, A. (2024). Schlussbericht des Konsortiums zum Verbundvorhaben Korrektur von GNSS-Mehrwegeffekten für die zuverlässige Eigenlokalisierung von hochautomatisierten Fahrzeugen in innerstädtischen Bereichen (KOMET). Leibniz Universität Hannover. https://doi.org/10.15488/17407

2023


Elmaghraby, A., Krawinkel, T., Schön, S., Piester, D., & Bauch, A. (2023). On Error Modeling in GNSS-based Frequency Transfer: Effects of Temperature Variations and Satellite Orbit Repeat Times. In Proceedings of the 54th Annual Precise Time and Time Interval Systems and Applications Meeting: January 23 - 26, 2023 Hyatt Regency Long Beach Long Beach, California (pp. 23-37). (Proceedings of the Annual Precise Time and Time Interval Systems and Applications Meeting, PTTI; Vol. 2023-January). https://doi.org/10.33012/2023.18699, https://doi.org/10.15488/17445
Knabe, A., Schilling, M., Wu, H., HosseiniArani, S. A., Müller, J., Beaufils, Q., & Dos Santos, F. P. (2023). The Benefit of Accelerometers based on Cold Atom Interferometry for Future Satellite Gravity Missions. In J. T. Freymueller, & L. Sánchez (Eds.), Geodesy for a Sustainable Earth: Proceedings of the 2021 Scientific Assembly of the International Association of Geodesy, Beijing, China, June 28 – July 2, 2021 (pp. 213–220). (International Association of Geodesy Symposia; Vol. 154). Springer, Cham. https://doi.org/10.1007/1345_2022_151, https://doi.org/10.15488/16504
Kulemann, D., & Schön, S. (2023). Towards Integrity Monitoring of GNSS Velocity Estimates in Urban Environment. In Proceedings of the 36th International Technical Meeting of the Satellite Division of The Institute of Navigation (ION GNSS+ 2023) (pp. 245-261) https://doi.org/10.33012/2023.19419
Kupriyanov, A., Reis, A., Schilling, M., Müller, V., & Müller, J. (2023). Evaluation of optical accelerometry for next generation gravimetry missions. In EGU General Assembly 2023 https://doi.org/10.5194/egusphere-egu23-2224
Müller, J. (2023). Benefit of Quantum Technology for Geodesy. In EGU General Assembly 2023 https://doi.org/10.5194/egusphere-egu23-5719
Nuñez von Voigt, P., Heine, N., Herr, W., Schubert, C., Timmen, L., Müller, J., & Rasel, E. M. (2023). Atom interferometry in the transportable Quantum Gravimeter QG-1. In EGU General Assembly 2023 https://doi.org/10.5194/egusphere-egu23-14404
Romeshkani, M., Müller, J., Knabe, A., & Schilling, M. (2023). Benefit of Quantum technology for future earth observation from space: gradiometry case. In EGU General Assembly 2023 https://doi.org/10.5194/egusphere-egu23-7997

Software, data, miscellaneous publications

  • 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 - 2021Research Data Repository of the Leibniz University of Hannover
    DOI: 10.25835/3h1r07a7
  • Koch I., Duwe M., Flury J., Shabanloui A. (2020): Dataset: LUH-GRACE-FO-2020Data Repository Leibniz University Hannover More info
    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 More info
    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 More info
    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