Acceso abierto

Using Different Mapping Function In GPS Processing For Remote Sensing The Atmosphere


Cite

Bevis, Michael, Steven Businger, Steven Chiswell, Thomas A Herring, Richard A Anthes, Christian Rocken, and Randolph H Ware. 1994. “GPS Meteorology: Mapping Zenith Wet Delays onto Precipitable Water.” Journal of Applied Meteorology 33 (3): 379–86.10.1175/1520-0450(1994)033<0379:GMMZWD>2.0.CO;2Search in Google Scholar

Boehm, Johannes, Birgit Werl, and Harald Schuh. 2006. “Troposphere Mapping Functions for GPS and Very Long Baseline Interferometry from European Centre for Medium-Range Weather Forecasts Operational Analysis Data.” Journal of Geophysical Research 111 (B2): B02406. doi:10.1029/2005JB003629.10.1029/2005JB003629Search in Google Scholar

Bosy, J, J Kaplon, W Rohm, J Sierny, and T Hadas. 2012. “Near Real-Time Estimation of Water Vapour in the Troposphere Using Ground GNSS and the Meteorological Data.” In Annales Geophysicae, 30:1379–91. Copernicus GmbH.10.5194/angeo-30-1379-2012Search in Google Scholar

Dousa, Jan, and Gemma V. Bennitt. 2012. “Estimation and Evaluation of Hourly Updated Global GPS Zenith Total Delays over Ten Months.” GPS Solutions 17 (4): 453–64. doi:10.1007/s10291-012-0291-7.10.1007/s10291-012-0291-7Search in Google Scholar

Duan, Jingping, Michael Bevis, Peng Fang, Yehuda Bock, Steven Chiswell, Steven Businger, Christian Rocken, Frederick Solheim, Terasa van Hove, and Randolph Ware.Search in Google Scholar

1996. “GPS Meteorology: Direct Estimation of the Absolute Value of Precipitable Water.” Journal of Applied Meteorology 35 (6): 830–38.10.1175/1520-0450(1996)035<0830:GMDEOT>2.0.CO;2Search in Google Scholar

Herring, T A, R W King, and S C McClusky. 2008. “Introduction to Gamit/Globk.” Massachusetts Institute of Technology, Cambridge.Search in Google Scholar

Hobiger, T, J Boehm, and R Ichikawa. 2012. “Troposphere Delay Modeling-Status Quo and Future Trends.” In AGU Fall Meeting Abstracts, 1:5.Search in Google Scholar

Katsougiannopoulos, S, C Pikridas, D Rossikopoulos, I Ifadis, and A Fotiou. 2006. “Tropospheric Refraction Estimation Using Various Models, Radiosonde Measurements and Permanent GPS Data.” PS5. 4–GNSS Processing and Applications, 15.Search in Google Scholar

Kuo, Y-H, W S Schreiner, J Wang, D L Rossiter, and Y Zhang. 2005. “Comparison of GPS Radio Occultation Soundings with Radiosondes.” Geophysical Research Letters 32 (5). Wiley Online Library.10.1029/2004GL021443Search in Google Scholar

Lagler, Klemens, Michael Schindelegger, Johannes Böhm, Hana Krásná, and Tobias Nilsson. 2013. “GPT2: Empirical Slant Delay Model for Radio Space Geodetic Techniques.” Geophysical Research Letters 40 (6). Wiley Online Library: 1069–73.10.1002/grl.50288Search in Google Scholar

Liou, Yuei-An, Cheng-Yung Huang, and Yu-Tun Teng. 2014. “Precipitable Water Observed by Ground-Based GPS Receivers and Microwave Radiometry.” Earth, Planets and Space 52 (6): 445–50. doi:10.1186/BF03352256.10.1186/BF03352256Search in Google Scholar

Nilsson, Tobias, Johannes Böhm, DudyD. Wijaya, Ana Tresch, Vahab Nafisi, and Harald Schuh. 2013. “Path Delays in the Neutral Atmosphere.” In Atmospheric Effects in Space Geodesy SE - 3, edited by Johannes Böhm and Harald Schuh, 73–136. Springer Atmospheric Sciences. Springer Berlin Heidelberg. doi:10.1007/978-3-642-36932-2_3.10.1007/978-3-642-36932-2_3Search in Google Scholar

Nistor, S, and A S Buda. 2015. “Scheduling And Simulation Of VLBI Measuremets For The Determination Of Earth Orientation Parameters.” Journal of Applied Engineering Sciences 5 (1): 61–68.10.1515/jaes-2015-0008Search in Google Scholar

Nistor, Sorin, and Aurelian Stelian Buda. 2015. “Ambiguity Resolution in Precise Point Positioning Technique: A Case Study.” Journal of Applied Engineering Science.10.1515/jaes-2015-0007Search in Google Scholar

Ohtani, Ryu, and Isao Naito. 2000. “Comparisons of GPS-derived Precipitable Water Vapors with Radiosonde Observations in Japan.” Journal of Geophysical Research: Atmospheres (1984–2012) 105 (D22). Wiley Online Library: 26917–29.10.1029/2000JD900362Search in Google Scholar

Tregoning, Paul, Reinout Boers, Denis O’Brien, and Martin Hendy. 1998. “Accuracy of Absolute Precipitable Water Vapor Estimates from GPS Observations.” Journal of Geophysical Research 103 (D22): 28701. doi:10.1029/98JD02516.10.1029/98JD02516Search in Google Scholar

Van Baelen, Joël, Jean-Pierre Aubagnac, and Alain Dabas. 2005. “Comparison of near-Real Time Estimates of Integrated Water Vapor Derived with GPS, Radiosondes, and Microwave Radiometer.” Journal of Atmospheric and Oceanic Technology 22 (2): 201–10.10.1175/JTECH-1697.1Search in Google Scholar

Wang, Junhong, Liangying Zhang, and Aiguo Dai. 2005. “Global Estimates of Water-vapor-weighted Mean Temperature of the Atmosphere for GPS Applications.” Journal of Geophysical Research: Atmospheres (1984–2012) 110 (D21). Wiley Online Library.10.1029/2005JD006215Search in Google Scholar

Yu, Kegen, Chris Rizos, Derek Burrage, Andrew G Dempster, Kefei Zhang, and Markus Markgraf. 2014. “An Overview of GNSS Remote Sensing.” EURASIP Journal on Advances in Signal Processing 2014 (1): 134. doi:10.1186/1687-6180-2014-134.10.1186/1687-6180-2014-134Search in Google Scholar

eISSN:
2284-7197
ISSN:
2247-3769
Idioma:
Inglés
Calendario de la edición:
2 veces al año
Temas de la revista:
Engineering, Introductions and Overviews, other, Electrical Engineering, Energy Engineering, Geosciences, Geodesy