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Zubko, Nataliya; Xu, Ming Hui; Kareinen, Niko; Savolainen, Tuomas; Poutanen, Markku (2025) Instrumental and systematic effects in VGOS differential ionospheric total electron content. Advances in Space Research, 76 (7). doi:10.1016/j.asr.2025.06.022

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Reference TypeJournal (article/letter/editorial)
TitleInstrumental and systematic effects in VGOS differential ionospheric total electron content
JournalAdvances in Space Research
AuthorsZubko, NataliyaAuthor
Xu, Ming HuiAuthor
Kareinen, NikoAuthor
Savolainen, TuomasAuthor
Poutanen, MarkkuAuthor
Year2025 (October)Volume76
Issue7
PublisherElsevier BV
DOIdoi:10.1016/j.asr.2025.06.022Search in ResearchGate
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Mindat Ref. ID18895127Long-form Identifiermindat:1:5:18895127:3
GUID0
Full ReferenceZubko, Nataliya; Xu, Ming Hui; Kareinen, Niko; Savolainen, Tuomas; Poutanen, Markku (2025) Instrumental and systematic effects in VGOS differential ionospheric total electron content. Advances in Space Research, 76 (7). doi:10.1016/j.asr.2025.06.022
Plain TextZubko, Nataliya; Xu, Ming Hui; Kareinen, Niko; Savolainen, Tuomas; Poutanen, Markku (2025) Instrumental and systematic effects in VGOS differential ionospheric total electron content. Advances in Space Research, 76 (7). doi:10.1016/j.asr.2025.06.022
In(2025, October) Advances in Space Research Vol. 76 (7). Elsevier BV

References Listed

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Barrett, J., Cappallo, R., Corey, B. et al., 2019. VGOS Data Processing Manual, HOPS Documentation, Version 1.1. MIT Haystack Observatory. https://www.haystack.mit.edu/wp-content/uploads/2020/07/docs_hops_000_vgos-data-processing.pdf, accessed: 2025-05-13.
Cappallo, R., 2015. Covariance analysis of the simultaneous fit of group delay and dTEC in fourfit. Documentation of HOPS. https://www.haystack.mit.edu/wp-content/uploads/2020/07/docs_hops_014_simul_ion_fit.pdf, accessed: 2025-05-13.
Cappallo (2016) Delay and phase calibration in VGOS post-processing
Corey (2018) Setting correlator clocks for VGOS CONT17 processing , 050
Danziger, Z., 2023. Discrete Fréchet Distance. https://www.mathworks.com/matlabcentral/fileexchange/31922-discrete-frechet-distance, MATLAB Central File Exchange, accessed: 2025-05-13.
Eiter, T., & Mannila, H., 1994. Computing discrete Frechet distance. Technical Report 94/64, Christian Doppler Laboratory. Vienna University of Technology.
Hase, H., 2023. Alternative Frequency Setups for VGOS. In IVS 2022 General Meeting Proceedings, Edited by Kyla L. Armstrong, Dirk Behrend, and Karen D. Baver, NASA/CP-20220018789. https://ivscc.gsfc.nasa.gov/publications/gm2022/27_hase.pdf, accessed: 2025-05-13.
Hernández-Pajares (2020) J. Geodesy A new way of improving global ionospheric maps by ionospheric tomography: consistent combination of multi-GNSS and multi-space geodetic dual-frequency measurements gathered from vessel-, LEO- and ground-based receivers 94
IGS, 2025. https://igs.org/, accessed: 2025-05-13.
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Mannucci (1999) GPS and ionosphere
Not Yet Imported: - journal-article : 10.1029/2021RS007336

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Nothnagel (2025) Elements of geodetic and astrometric Very Long Baseline 4.2
Petrachenko (2009) Design Aspects of the VLBI2010 System
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Schaer (1999) Geodaetisch-Geophysikalische Arbeiten in der Schweiz, Mapping and predicting the Earth’s ionosphere using the Global Positioning System 59
Schaer, S., Beutler, G., & Rothacher, M. (1998). Mapping and predicting the ionosphere. In IGS Analysis Center Workshop, Int. GNSS Serv., Darmstadt, Germany, 9–11 Feb.
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