Begutachtete Zeitschriftenartikel, Bücher, Buchkapitel
Zeige Ergebnisse 141 - 150 von 192
2012
Peterseim, N., Flury, J., & Schlicht, A. (2012). Magnetic torquer induced disturbing signals within GRACE accelerometer data. Advances in space research, 49(9), 1388-1394. https://doi.org/10.1016/j.asr.2012.02.013
Schilling, M., Müller, J., & Timmen, L. (2012). Einsatz der Atominterferometrie in der Geodäsie. Zeitschrift für Geodäsie, Geoinformation und Landmanagement (online), 137(3), 185-194.
Timmen, L., Gitlein, O., Klemann, V., & Wolf, D. (2012). Observing Gravity Change in the Fennoscandian Uplift Area with the Hanover Absolute Gravimeter. Pure and applied geophysics, 169(8), 1331-1342. https://doi.org/10.1007/s00024-011-0397-9
2011
Deng, Z., Bender, M., Zus, F., Ge, M., Dick, G., Ramatschi, M., Wickert, J., Lhnert, U., & Schön, S. (2011). Validation of tropospheric slant path delays derived from single and dual frequency GPS receivers. Radio science, 46(6), Artikel RS6007. https://doi.org/10.1029/2011RS004687
2010
Hofmann, F., Müller, J., & Biskupek, L. (2010). Lunar laser ranging test of the Nordtvedt parameter and a possible variation in the gravitational constant. Astronomy and astrophysics, 522(3), Artikel L5. https://doi.org/10.1051/0004-6361/201015659
Koch, C., Müller, J., Christensen, U. R., & Kallenbach, R. (2010). Bestimmung der Topographie und Lovezahl von Merkur aus simulierten Daten des BepiColombo-Laseraltimeters. Zeitschrift für Geodäsie, Geoinformation und Landmanagement (online), 135(3), 173-178. https://geodaesie.info/zfv/heftbeitrag/191
Merlet, S., Bodart, Q., Malossi, N., Landragin, A., Pereira Dos Santos, F., Gitlein, O., & Timmen, L. (2010). Comparison between two mobile absolute gravimeters: Optical versus atomic interferometers. METROLOGIA, 47(4), L9-L11. https://doi.org/10.48550/arXiv.1005.0357, https://doi.org/10.1088/0026-1394/47/4/L01
Müller, J., Naeimi, M., Gitlein, O., Timmen, L., & Denker, H. (2010). A land uplift model in Fennoscandia combining GRACE and absolute gravimetry data. Physics and chemistry of the earth, 53-54, 54-60. https://doi.org/10.1016/j.pce.2010.12.006
Vennebusch, M., Schön, S., & Weinbach, U. (2010). Temporal and spatial stochastic behaviour of high-frequency slant tropospheric delays from simulations and real GPS data. Advances in space research, 47(10), 1681-1690. https://doi.org/10.1016/j.asr.2010.09.008
Weinbach, U., & Schön, S. (2010). GNSS receiver clock modeling when using high-precision oscillators and its impact on PPP. Advances in space research, 47(2), 229-238. https://doi.org/10.1016/j.asr.2010.06.031
Konferenzbeiträge (Paper, Poster, Präsentationen, Kurzfassungen)
Zeige Ergebnisse 141 - 150 von 319
2018
Arzate, J., Esparza, A., Timmen, L., & Schilling, M. (2018). High precision absolute gravimetry. In and out laboratory measurements: the Jalisco Block (Mexico) changes in gravity 1996-2016. Abstract von EGU General Assembly 2020, online. https://ui.adsabs.harvard.edu/abs/2018EGUGA..2010031A/abstract
Douch, K. V., Knabe, A., Wu, H., Müller, J., & Heinzel, G. (2018). What is Required to Recover the Time-variable Gravitational Field Using Satellite Gradiometry?. Postersitzung präsentiert bei International Symposium Gravity, Geoid and Height Systems 2, Kopenhagen, Dänemark.
Hosseiniarani, A., Bertone, S., Jaeggi, A., & Thomas, N. (2018). Improved modelling of BELA altimetry observation for MPO orbit reconstruction.
Hosseiniarani, A., Bertone, S., Arnold, D., Jäggi, A., & Thomas, N. (2018). Simulation of MPO orbit reconstruction using Doppler observations and comparison with laser altimetry observations.
Kersten, T., Ren, L., & Schön, S. (2018). A Virtual Receiver Concept for Continuous GNSS based Navigation of Inland Vessels. Beitrag in NAVITEC 2018, Noordwijk, Niederlande. https://doi.org/10.15488/3898
Kersten, T., Ren, L., & Schön, S. (2018). A Virtual Receiver Concept for Continuous GNSS based Navigation of Inland Vessels. https://doi.org/10.15488/4142
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
Kersten, T., Ren, L., & Schön, S. (2018). Continuous Navigation of an Inland Vessel with a Synthetic GNSS Antenna. https://doi.org/10.15488/4143
Kersten, T., & Schön, S. (2018). GNSS im urbanen Raum: Grenzen und Chancen der Überwachung erdfallinduzierter Deformationen. https://www.ife.uni-hannover.de/fileadmin/ife/publications/20181107_KerstenSchoen_LIAG_final_01.pdf
Kersten, T., & Paffenholz, J.-A. (2018). Zur Bewertung von High Sensitivity GNSS-Empfängern bei der Kombination in Multi-Sensor-Systemen. Postersitzung präsentiert bei POSNAV ITS 2018. Vorabveröffentlichung online. https://doi.org/10.15488/3945
Software, Daten, sonstige Publikationen
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(2022): Weak Equivalence Principle Test with Neutrons, Dataset: Institut Laue-Langevin (ILL)
DOI: 10.5291/ILL-DATA.3-14-415 -
(2022): Dataset: Earth Rotation Parameters from LLR with NPs for timespan 1970 - 2021, Forschungsdaten-Repositorium der Leibniz Universität Hannover
DOI: 10.25835/3h1r07a7 -
(2020): Dataset: LUH-GRACE-FO-2020, Data Repository Leibniz University Hannover Weitere Informationen
DOI: 10.25835/0062546 -
(2020): International Combination Service for Time-variable Gravity Fields (COST-G) Monthly GRACE-FO Series. V. 01, GFZ Data Services Weitere Informationen
DOI: 10.5880/ICGEM.COST-G.002 -
(2019): Dataset: Urban GNSS campaigns from 2015-2017 in Hamburg Groß-Flottbek from SIMULTAN project, Data Repositorium Leibniz University Hannover and Leibniz University IT Service (LUIS)
DOI: 10.25835/0050677 -
(2019): Dataset: Urban GNSS campaigns from 2015-2017 in Bad Frankenhausen (Thuringia) from SIMULTAN project, Data Repositorium Leibniz University Hannover and Leibniz University IT Service (LUIS)
DOI: 10.25835/0084648 -
(2019): Dataset: LUH-GRACE2018, Data Repository Leibniz University Hannover Weitere Informationen
DOI: 10.25835/0022864 -
(2019): Robot based phase centre corrections for new GNSS signals, Data Repository Leibniz University Hannover and Leibniz University IT Service (LUIS)
DOI: 10.25835/0075279 -
(2018): Dataset: GNSS mass market and geodetic receiver benchmark study, Data Repository Leibniz University Hannover and Leibniz University IT Service (LUIS)
DOI: 10.25835/0034324 -
(2018): Dataset: GPS code phase variations (CPV) for GNSS receiver antennas, Data Repositorium Leibniz University Hannover and Leibniz Uiversity IT Service (LUIS)
DOI: 10.25835/0012492