Impact of different phase center correction values on GNSS-based positioning and frequency transfer

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dc.identifier.uri https://www.repo.uni-hannover.de/handle/123456789/15163
dc.identifier.uri https://doi.org/10.15488/15044
dc.contributor.author Kröger, Johannes eng
dc.contributor.author Elmaghraby, Ahmed eng
dc.contributor.author Krawinkel, Thomas eng
dc.contributor.author Kersten, Tobias eng
dc.contributor.author Breva, Yannick eng
dc.contributor.author Schön, Steffen eng
dc.date.accessioned 2023-10-19T12:14:23Z
dc.date.available 2023-10-19T12:14:23Z
dc.date.issued 2023
dc.identifier.citation Kröger, J.; Elmaghraby, A.; Krawinkel, T.; Kersten, T.; Breva, Y.; Schön, S.: Impact of different phase center correction values on GNSS-based positioning and frequency transfer. Presentation at the 28th General Assembly of the International Union of Geodesy and Geophysics, IUGG 2023, Berlin, Germany. Hannover : Institutionelles Repositorium der Leibniz Universität Hannover, 2023. DOI: https://doi.org/10.15488/15044 eng
dc.description.abstract For precise GNSS-based positioning and stable frequency transfer, it is mandatory to take antenna Phase Center Corrections (PCC) into account. They are determined either in an anechoic chamber using simulated signals or in the field using a robot and real GNSS-signals. The PCC are provided as a grid with a typical step size of 5° elevation and azimuth angles in the Antenna Exchange (ANTEX) format as individual calibrations or alternatively as type-mean values. For the same antenna type, PCC differences (dPCC) are present between results from different calibration methods, as well as between individual and type-mean values. In previous work, we proposed a comparison strategy for dPCC. From that, we developed a standardized simulation approach, which allows assessing the impact of multi-GNSS dPCC on station coordinates, troposphere and clock w.r.t. changing processing parameters. Our studies show that the up-component and clock parameter are affected by up to 1 cm. In our contribution, we use the simulation approach to assess the impact of dPCC on EUREF Permanent Network (EPN) station coordinates, clock and troposphere parameters. We will study dPCC between individual and type-mean calibrations. In addition, the impact of different PCC sets on GNSS-based frequency transfer stability will be investigated by means of Allan deviation. To this end, differential receiver clock time series from single differences and PPP approaches are used. We will characterize the noise process apparently induced by dPCC, its magnitude as well as variations with changing satellite geometry and varying PCC grid resolutions. eng
dc.language.iso ger eng
dc.publisher Hannover : Institutionelles Repositorium der Leibniz Universität Hannover
dc.rights CC BY-NC 3.0 DE eng
dc.rights.uri http://creativecommons.org/licenses/by-nc/3.0/de/ eng
dc.subject requency transfer eng
dc.subject GNSS antennas eng
dc.subject GNSS antenna calibration eng
dc.subject Frequenztransfer ger
dc.subject GNSS Antennen ger
dc.subject GNSS Antennenkalibrierung ger
dc.subject.classification Konferenzschrift eng
dc.subject.ddc 520 | Astronomie, Kartographie eng
dc.title Impact of different phase center correction values on GNSS-based positioning and frequency transfer eng
dc.type ConferenceObject eng
dc.type Text eng
dc.description.version publishedVersion eng
tib.accessRights frei zug�nglich eng


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