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Determination of Zenith Tropospheric Delay and Precipitable Water Vapor using GPS Technology Cover

Determination of Zenith Tropospheric Delay and Precipitable Water Vapor using GPS Technology

Open Access
|Jun 2016

References

  1. [1] M. King and S. Aoki, “Tidal observations on floating ice using a single GPS receiver,”, vol. 30, no. 3, p. n/a–n/a, Feb. 2003.
  2. [2] S. Nistor and A. S. Buda, “GPS network noise analysis: a case study of data collected over an 18-month period,”, pp. 1–14, Apr. 2016.
  3. [3] A. H. Dodson, P. J. Shardlow, L. C. M. Hubbard, G. Elgered, and P. O. J. Jarlemark, “Wet tropospheric effects on precise relative GPS height determination,”, vol. 70, no. 4, pp. 188–202, 1996.
  4. [4] P. Tregoning, R. Boers, D. O’Brien, and M. Hendy, “Accuracy of absolute precipitable water vapor estimates from GPS observations,”, vol. 103, no. D22, p. 28701, Nov. 1998.
  5. [5] T. Nilsson, J. Böhm, D. Wijaya, A. Tresch, V. Nafisi, and H. Schuh, “Path Delays in the Neutral Atmosphere,” in, J. Böhm and H. Schuh, Eds. Springer Berlin Heidelberg, 2013, pp. 73–136.
  6. [6] S. Katsougiannopoulos, C. Pikridas, D. Rossikopoulos, I. Ifadis, and A. Fotiou, “Tropospheric refraction estimation using various models, radiosonde measurements and permanent GPS data,”, p. 15, 2006.
  7. [7] K. Yu, C. Rizos, D. Burrage, A. G. Dempster, K. Zhang, and M. Markgraf, “An overview of GNSS remote sensing,”, vol. 2014, no. 1, p. 134, 2014.
  8. [8] T. Hobiger, J. Boehm, and R. Ichikawa, “Troposphere delay modeling-status quo and future trends,” in, 2012, vol. 1, p. 5.
  9. [9] J. Bosy, J. Kaplon, W. Rohm, J. Sierny, and T. Hadas, “Near real-time estimation of water vapour in the troposphere using ground GNSS and the meteorological data,” in, 2012, vol. 30, no. 9, pp. 1379–1391.
  10. [10] Y.-A. Liou, C.-Y. Huang, and Y.-T. Teng, “Precipitable water observed by ground-based GPS receivers and microwave radiometry,”, vol. 52, no. 6, pp. 445–450, Jun. 2014.
  11. [11] M. Bevis, S. Businger, S. Chiswell, T. A. Herring, R. A. Anthes, C. Rocken, and R. H. Ware, “GPS meteorology: Mapping zenith wet delays onto precipitable water,”, vol. 33, no. 3, pp. 379–386, 1994.
  12. [12] J. Dousa and G. V. Bennitt, “Estimation and evaluation of hourly updated global GPS Zenith Total Delays over ten months,”, vol. 17, no. 4, pp. 453–464, Oct. 2012.
  13. [13] J. Duan, M. Bevis, P. Fang, Y. Bock, S. Chiswell, S. Businger, C. Rocken, F. Solheim, T. van Hove, and R. Ware, “GPS meteorology: Direct estimation of the absolute value of precipitable water,”, vol. 35, no. 6, pp. 830–838, 1996.
  14. [14] R. Ohtani and I. Naito, “Comparisons of GPS-derived precipitable water vapors with radiosonde observations in Japan,”, vol. 105, no. D22, pp. 26917–26929, 2000.
  15. [15] T. A. Herring, R. W. King, and S. C. McClusky, “Introduction to Gamit/Globk,”, 2008.
  16. [16] S. Nistor and A. S. Buda, “Scheduling And Simulation Of VLBI Measurements For The Determination Of Earth Orientation Parameters,”, vol. 5, no. 1, pp. 61–68, Jan. 2015.
  17. [17] S. Nistor and A. S. Buda, “Ambiguity Resolution In Precise Point Positioning Technique: A Case Study,”, vol. 5, no. 1, Jan. 2015.
  18. [18] S. Nistor and A. S. Buda, “Using different mapping function in GPS processing for remote sensing the atmosphere,”, vol. 5, no. 2, 2015.
DOI: https://doi.org/10.1515/mmce-2016-0007 | Journal eISSN: 2784-1391 (formerly 2066-6934) | Journal ISSN: 2066-6934
Language: English
Page range: 21 - 26
Published on: Jun 29, 2016
Published by: Technical University of Civil Engineering of Bucharest
In partnership with: Paradigm Publishing Services
Publication frequency: Volume open

© 2016 Sorin Nistor, Aurelian Stelian Buda, published by Technical University of Civil Engineering of Bucharest
This work is licensed under the Creative Commons Attribution-NonCommercial-NoDerivatives 3.0 License.