Publications of the Institute of Geodesy

Books, monographs

Showing results 6 - 10 out of 10

Seeber, G. (2004). Satellite geodesy: foundations, methods, and applications. https://doi.org/10.1515/9783110200089
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Torge, W. (2002). Geodäsie. (2 ed.) de Gruyter. https://doi.org/10.1515/9783110198171
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Denker, H. (1989). A new gravimetric quasigeoid for the Federal Republic of Germany. (Veröffentlichungen der Deutschen Geodätischen Kommission bei der Bayerischen Akademie der Wissenschaften; Vol. 291). Verlag C.H. Beck.
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Seeber, G. (1988). Satellitengeodäsie: Grundlagen, Methoden u. Anwendungen . https://doi.org/10.1515/9783110849776
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Torge, W. (1975). Geodäsie. (1 ed.) de Gruyter. https://doi.org/10.1515/9783112315293
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Peer reviewed journal articles, books, book chapters

Showing results 11 - 20 out of 177

2023


Delva, P., Altamimi, Z., Blazquez, A., Blossfeld, M., Böhm, J., Bonnefond, P., Boy, J. P., Bruinsma, S., Bury, G., Chatzinikos, M., Couhert, A., Courde, C., Dach, R., Dehant, V., Dell’Agnello, S., Elgered, G., Enderle, W., Exertier, P., Glaser, S., ... Zajdel, R. (2023). GENESIS: co-location of geodetic techniques in space. Earth, planets and space, 75(1), Article 5. https://doi.org/10.1186/s40623-022-01752-w
Feizi, M., Raoofian Naeeni, M., & Flury, J. (2023). Antarctic Time-Variable Regional Gravity Field Model Derived from Satellite Line-of-Sight Gravity Differences and Spherical Cap Harmonic Analysis. Remote sensing, 15(11), Article 2815. Advance online publication. https://doi.org/10.3390/rs15112815
Karimidoona, A., & Schön, S. (2023). Predicting C/N0 as a Key Parameter for Network RTK Integrity Prediction in Urban Environments. Remote sensing, 15(19), Article 4850. https://doi.org/10.3390/rs15194850
Kermarrec, G., & Schön, S. (2023). Common-clock GPS single differences: An improved correlation model for GPS phase observations based on turbulence theory. Advances in space research, 72(4), 1081-1093. Advance online publication. https://doi.org/10.1016/j.asr.2023.05.042
Singh, V. V., Müller, J., Biskupek, L., Hackmann, E., & Lämmerzahl, C. (2023). Equivalence of Active and Passive Gravitational Mass Tested with Lunar Laser Ranging. Physical Review Letters, 131(2), Article 021401. Advance online publication. https://doi.org/10.48550/arXiv.2212.09407, https://doi.org/10.1103/PhysRevLett.131.021401
Tennstedt, B., Rajagopalan, A., Weddig, N. B., Abend, S., Schön, S., & Rasel, E. M. (2023). Atom Strapdown: Toward Integrated Quantum Inertial Navigation Systems. Navigation, Journal of the Institute of Navigation, 70(4), Article navi.604. Advance online publication. https://doi.org/10.33012/navi.604
Voigt, C., Sulzbach, R., Timmen, L., Dobslaw, H., Weise, A., Deng, Z., Stolarczuk, N., Pflug, H., Peters, H., Fietz, M., Thomas, M., Förste, C., & Flechtner, F. (2023). A superconducting gravimeter on the island of Heligoland for the high-accuracy determination of regional ocean tide loading signals of the North Sea. Geophysical journal international, 234(3), 1585-1602. https://doi.org/10.1093/gji/ggad147

2022


Kermarrec, G., Lösler, M., Guerrier, S., & Schön, S. (2022). The variance inflation factor to account for correlations in likelihood ratio tests: deformation analysis with terrestrial laser scanners. Journal of geodesy, 96(11), Article 86. https://doi.org/10.1007/s00190-022-01654-5
Kersten, T., Kröger, J., & Schön, S. (2022). Comparison concept and quality metrics for GNSS antenna calibrations: Cause and effect on regional GNSS networks. Journal of Geodesy, 96(7), Article 48. https://doi.org/10.1007/s00190-022-01635-8
Singh, V. V., Biskupek, L., Müller, J., & Zhang, M. (2022). Earth rotation parameter estimation from LLR. Advances in Space Research, 70(8), 2383-2398. Advance online publication. https://doi.org/10.1016/j.asr.2022.07.038

Peer-reviewed conference papers

Showing results 11 - 20 out of 147

2022


Icking, L., Ruwisch, F., & Schön, S. (2022). Multipath Characterization Using Ray-Tracing in Urban Trenches. In J. T. Freymueller, & L. Sánchez (Eds.), Geodesy for a Sustainable Earth. International Association of Geodesy Symposia (pp. 359-365). Article 154 (International Association of Geodesy Symposia; Vol. 154). Springer Berlin Heidelberg. https://doi.org/10.1007/1345_2022_166
Icking, L., & Schön, S. (2022). Optimal Combination of Multi-Agent Smartphone GNSS Observations for Improved Collaborative Positioning in Urban Areas. In 35th International Technical Meeting of the Satellite Division of the Institute of Navigation, ION GNSS+ 2022 (pp. 2828-2838). Institute of Navigation. https://doi.org/10.33012/2022.18554
Icking, L., Zhang, G., Hsu, L. T., & Schön, S. (2022). Quantification of GNSS NLOS Spatial Correlation: A Case Study in Hong Kong's Urban Canyon. In Proceedings of the 2022 International Technical Meeting of The Institute of Navigation, ITM 2022 (pp. 712-722). (Proceedings of the International Technical Meeting of The Institute of Navigation, ITM; Vol. 2022-January). Institute of Navigation. https://doi.org/10.33012/2022.18165
Karimidoona, A., & Schön, S. (2022). Integrity Monitoring of Commercial RTK Receivers in Static Open Sky and Kinematic Urban Environments Scenarios. In Integrity Monitoring of Commercial RTK Receivers in Static Open Sky and Kinematic Urban Environments Scenarios (pp. 819-834). (Proceedings of the International Technical Meeting of The Institute of Navigation, ITM; Vol. 2022-January). Institute of Navigation. https://doi.org/10.33012/2022.18201
Kersten, T., Krzan, G., Dawidowicz, K., & Schön, S. (2022). On the effect of antenna calibration errors on geodetic estimates: Investigation on zero and double difference approaches. 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 (Vol. 154, pp. 321 - 332). (International Association of Geodesy Symposia). Springer Nature Switzerland AG. https://doi.org/10.1007/1345_2022_153
Knabe, A., Schilling, M., Wu, H., Hosseiniarani, A., Müller, J., Beaufils, Q., & Pereira Dos Santos, F. (2022). The Benefit of Accelerometers Based on Cold Atom Interferometry for Future Satellite Gravity Missions. In J. T. Freymueller, & L. Sánchez (Eds.), International Association of Geodesy Symposia (pp. 213-220). (International Association of Geodesy Symposia; Vol. 154). Springer Nature. https://doi.org/10.1007/1345_2022_151
Krawinkel, T., Elmaghraby, A., & Schön, S. (2022). Exploring the Technical Limits of GNSS-based Frequency Transfer. In Proceedings of the 53rd Annual Precise Time and Time Interval Systems and Applications Meeting (pp. 188-198) https://doi.org/10.33012/2022.18288
Krawinkel, T., & Schön, S. (2022). 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 (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. (2022). On the Potential of Image Similarity Metrics for Comparing Phase Center Corrections. In J. T. Freymueller, & L. Sánchez (Eds.), International Association of Geodesy Symposia (pp. 345-357). (International Association of Geodesy Symposia; Vol. 154). Springer Nature. https://doi.org/10.1007/1345_2022_146
Meister, J., Bremer, S., HosseiniArani, A., Leipner, A., List, M., Müller, J., & Schilling, M. (2022). Reference Mirror Misalignment of Cold Atom Interferometers on Satellite-Based Gravimetry Missions. In Proceedings of the International Astronautical Congress, IAC Article 190266 (Proceedings of the International Astronautical Congress, IAC; Vol. 2022-September).

Dissertations

Showing results 6 - 10 out of 32

2021


Ren, L. (2021). GPS-based Precise Absolute and Relative Kinematic Orbit Determination of Swarm Satellites under Challenging Ionospheric Conditions. [Doctoral thesis, Leibniz University Hannover]. Leibniz Universität Hannover.

2020


Fernandez, N. G. (2020). Simulation Framework for Collaborative Navigation: Development - Analysis - Optimization. [Doctoral thesis, Leibniz University Hannover]. Leibniz Universität Hannover. https://publikationen.badw.de/en/046924745/pdf/CC%20BY

2019


Miller, D. (2019). Seismic noise analysis and isolation concepts for the ALPS II experiment at DESY. [Doctoral thesis, Leibniz University Hannover]. Leibniz Universität Hannover. https://doi.org/10.15488/9864
Schilling, M. (2019). Kombination von klassischen Gravimetern mit Quantensensoren. [Doctoral thesis, Leibniz University Hannover]. https://dgk.badw.de/fileadmin/user_upload/Files/DGK/docs/c-777.pdf

2018


Goswami, S. (2018). Understanding the sensor noise in the GRACE range-rate observations by analyzing their residuals. [Doctoral thesis, Leibniz University Hannover]. Leibniz Universität Hannover. http://publikationen.badw.de/de/045198530

Conference contributions (papers, posters, presentations, abstracts)

Showing results 11 - 20 out of 267

2023


Kersten, T., Kröger, J., Breva, Y., & Schön, S. (2023). Applying phase center corrections also to code observables? A PPP case study. 28th General Assembly of the International Union of Geodesy and Geophysics, IUGG 2023, Berlin, Berlin, Germany. https://doi.org/10.15488/14220, https://doi.org/10.57757/IUGG23-4426
Knabe, A., Schilling, M., HosseiniArani, S. A., Romeshkani, M., Müller, J., Beaufils, Q., & Pereira Dos Santos, F. (2023). Cold atom interferometry accelerometry for future low-low satellite-to-satellite tracking and cross-track gradiometry satellite gravity missions. Abstract from 28th General Assembly of the International Union of Geodesy and Geophysics, IUGG 2023, Berlin, Berlin, Germany.
Kröger, J., Elmaghraby, A. M. A., Krawinkel, T., Kersten, T., Breva, Y., & Schön, S. (2023). Impact of different phase center correction values on GNSS-based positioning and frequency transfer. 28th General Assembly of the International Union of Geodesy and Geophysics, IUGG 2023, Berlin, Berlin, Germany. https://doi.org/10.15488/15044
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. https://doi.org/10.5194/egusphere-egu23-2224
Müller, J. (2023). Benefit of Quantum Technology for Geodesy. Paper presented at EGU General Assembly 2023, Wien, Austria. https://doi.org/10.5194/egusphere-egu23-5719
Romeshkani, M., Müller, J., Knabe, A., & Schilling, M. (2023). Benefit of Quantum technology for future earth observation from space: gradiometry case. Abstract from EGU General Assembly 2023, Wien, Austria. https://doi.org/10.5194/egusphere-egu23-7997
Romeshkani, M., Müller, J., Knabe, A., & Schilling, M. (2023). The benefit of Quantum technology for future satellite gradiometry missions. Abstract from 28th General Assembly of the International Union of Geodesy and Geophysics, IUGG 2023, Berlin, Berlin, Germany.
Schön, S., Kröger, J., Kersten, T., & Breva, Y. (2023). Antennenspezifische Effekte: ein aktueller Überblick. GNSS 2023 - Zeit für ein Update?!, Bochum, North Rhine-Westphalia, Germany. https://doi.org/10.15488/14741
Schön, S., Kröger, J., Kersten, T., & Breva, Y. (2023). Antennenspezifische Effekte: ein aktueller Überblick. In GNSS 2023 : Zeit für ein Update?! (pp. 121 - 134). (DVW-Schriftenreihe; Vol. 106). DVW e. V. – Gesellschaft für Geodäsie, Geoinformation und Landmanagement. https://geodaesie.info/images/schriftenreihe/downloads/DVW_106_2023_GNSS_2023_FINAL_230816.pdf

Journal articles, reports, preprints

Showing results 11 - 20 out of 63

2020


Kröger, J., Kersten, T., Breva, Y., & Schön, S. (2020). Multi-GNSS Receiver Antenna Calibration. In FIG Working Week 2020: Proceedings https://doi.org/10.15488/9812
Mattauch, S., Lohmann, K., Hannig, F., Lohmann, D., & Teich, J. (2020). A Bibliometric Approach for Detecting the Gender Gap in Computer Science. Communications of the ACM, 63(5), 74-80. https://doi.org/10.1145/3376901
Viswanathan, V., Mazarico, E., Merkowitz, S., Williams, J. G., Turyshev, S. G., Currie, D. G., Ermakov, A. I., Rambaux, N., Fienga, A., Courde, C., Chabé, J., Torre, J-M., Bourgoin, A., Schreiber, U., Eubanks, T. M., Wu, C., Dequal, D., Dell'Agnello, S., Biskupek, L., ... Kopeikin, S. (2020). Extending Science from Lunar Laser Ranging. Bulletin of the AAS, 53(4). https://doi.org/10.3847/25c2cfeb.3dc2e5e4

2019


Abdelaal, M. E. H., & Schön, S. (2019). Distributed Nonlinear Model Predictive Control for Connected Vehicles Trajectory Tracking and Collision Avoidance with Ellipse Geometry. In Proceedings of the 32nd International Technical Meeting of the Satellite Division of The Institute of Navigation (ION GNSS+ 2019) (pp. 2100-2111). (Proceedings of the Satellite Division's International Technical Meeting). Institute of Navigation. https://doi.org/10.33012/2019.16911
Denker, H., Timmen, L., & Völksen, C. (2019). Report on levelling and GNSS results for stations on the MPQ campus in Garching. https://doi.org/10.15488/9163
Görres, B., Kersten, T., Schön, S., Zimmermann, F., & Wanninger, L. (2019). Zur Neubearbeitung des GNSS-Antennen-Merkblatts. In Qualitätssicherung geodätischer Mess- und Auswerteverfahren 2019: Beiträge zum 180. DVW-Seminar am 27. und 28. Juni 2019 in Stuttgart (pp. 103-105). (Schriftenreihe des DVW; Vol. 95). Wissner Verlag. https://geodaesie.info/sites/default/files/privat/DVW_95_2019_QS_2019_FINAL_190624.pdf
Kersten, T., Weise, A., Timmen, L., Gabriel, G., Schön, S., & Vogel, D. (2019). Urbanes Monitoring erdfallinduzierter Deformationen: Grenzen und Chancen bei der Kombination von GNSS, Nivellement und Gravimetrie. In Tagungsband Geomonitoring 2019 (Vol. 2019, pp. 49-61). (Tagungsreihe GeoMonitoring). Forschungsdaten-Repositorium der LUH. https://doi.org/10.15488/4512
Kersten, T., Weise, A., Timmen, L., Gabriel, G., & Vogel, D. (2019). Urbanes Monitoring erdfallinduzierter Deformationen: Grenzen und Chancen bei der Kombination von GNSS, Nivellement und Gravimetrie. Markscheidewesen, 126(2), 11-19.
Krawczyk, C., Dahm, T., Gabriel, G., Polom, U., Becker, D., Schön, S., Kersten, T., Timmen, L., Weise, A., Werban, U., Kaufmann, G., Börner, F., Mai, F., Romanov, D., & Schuck, A. (2019). Verbundprojekt SIMULTAN: Subrosion und Erdfall-Instabilität: integrierte multi-skalige Überwachung und Analyse: Schlussbericht zum BMBF-Verbundvorhaben - Förderkennzeichen FKZ 03G0843 (A bis J). TIB Leibniz-Informationszentrum Technik und Naturwissenschaften Universitätsbibliothek. https://doi.org/10.15488/5153
Müller, J., Hofmann, F., & Biskupek, L. (2019). Warum man den Abstand zum Mond misst. In Jahrbuch 2018 der Braunschweigischen Wissenschaftlichen Gesellschaft (Vol. 2018, pp. 17-28). (Jahrbuch der Braunschweigischen Wissenschaftlichen Gesellschaft; Vol. 2018). Cramer. https://doi.org/10.24355/dbbs.084-201905071310-0

Software, data, miscellaneous publications

  • 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