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A Method to Use Modis Water Vapor Products For Correction of Atmospheric-Induced Phase in Interferogram Cover

A Method to Use Modis Water Vapor Products For Correction of Atmospheric-Induced Phase in Interferogram

Open Access
|Jan 2012

References

  1. Aobpaet, A., Cuenca, M., Hooper, A., Trisirisatayawong, I. (2010). Land subsidence evaluation using InSAR time series analysis in Bangkok metropolitan area.Frascati, Italy.
  2. Bevis, M., Businger, S., Herring, T.A., Rocken, C., Anthes, R.A., & Ware, R. H. (1992). GPS meteorology: remote sensing of atmospheric water vapor using the Global Positioning System.(D14), 15, 787-715, 801.
  3. Cutberto, U. P., & Wilver, E. S. (2010). An accuracy assessment of spaceborne x-band (TerraSAR-X) spotlight mode InSAR DEMs.Leicester, UK.
  4. Emardson, T., Simons, M., & Webb, F. (2003). Neutral atmospheric delay in interferometric sysnthetic aperture radar applications: Statistical description and mitigation., 2231.
  5. Galloway, D., & Hoffman, J. (2007). The application of satellite differential SAR interferometry-derived ground displacements in hydrogeology.(1), 133-154.
  6. Gao, B. C., & Kaufman, Y. (2003). Water vapor retrievals using Moderate Resolution Imaging Spectroradiometer (MODIS) near-infrared channels.(D13, 4389).
  7. Hanssen, R. F., Weckwerth, T. M., Zebker, H. A., & Klees, R. (1999). High-resolution water vapor mapping from interferometric radar measurements.(5406), 1297-1299.
  8. Hanssen, R. (2001).Kluwer Academic Publishers: Dordrecht.
  9. Katsougiannopoulos, S., Pikridas, C., Rossikopoulos, D., Ifadis, I. M., & Fotiou, a. A. (2006). Tropospheric Refraction Estimation Using Various Models, Radiosonde Measurements and Permanent GPS data.Congress. Munich, Germany.
  10. Kos, T., Botincan, M., & Markezic, I. (2008). Estimation of Tropospheric Delay Models compliance.Zadar, Croatia.
  11. Li, Z., Muller, J., Cross, P. (2003). Tropospheric correction techniques in repeat-pass SAR interferometry., ESA ESRIN. Frascati, Italy.
  12. Li, Z. (2004). Production of regional 1 km x 1 km water vapor fields through the integration of GPS and MODIS data.Long Beach, California, USA.
  13. Li, Z., Muller, J., Cross, P., & Fielding, E. J. (2005). Interferometric synthetic aperture radar (InSAR) atmospheric correction: GPS, Moderate Resolution Imaging Spectroradiometer (MODIS), and InSAR integration.
  14. Li, Z., Fielding, E.J., Cross, P., & Preusker, R. (2009). Advanced InSAR atmospheric correction: MERIS/MODIS combination and stacked water vapour models.(13), 3343-3363.
  15. Mendes, V. (1999). Modeling the neutral-atmosphere propagation delay in radiometric space techniques.New Brunswick, Canada: University of New Brunswick.
  16. Phienwej, N. G. (2006). Bangkok Land Subsidence., 82 (4), 187-201.
  17. Poncos, V., & Dana, I. (2008). Interferometric Generation of Digital Elevation Models for Urban Areas Using TerraSAR-X.
  18. Qu, W. J., Zhu, W.-Y., Song, S. L., & Ping, J. S. (2008). Evaluation of the Precision of Three Tropospheric Delay Correction Models., 32 (4), 429-438.
  19. Rabus, B. E. (2003). The shuttle radar topography mission—a new class of digital elevation models acquired by spaceborne radar., 241-262.
  20. Saastamoinen, J. (1972). Atmospheric correction for the troposphere and stratosphere in radio ranging of satellites., (pp. 247-251).
  21. Webley, P. B. (2002). Atmospheric water vapour correction to InSAR surface motion measurements on mountains: results from a dense GPS network on Mount Etna., 363-370.
  22. Zebker, H. A., Rosen, P. A., & Hensley, S. (1997). Atmospheric effects in interferometric synthetic aperture radar surface deformation and topographic maps., 7547-7563.
DOI: https://doi.org/10.2478/v10018-011-0011-5 | Journal eISSN: 2083-6104 | Journal ISSN: 1509-3859 (formerly 0208-841X)
Language: English
Page range: 47 - 62
Published on: Jan 3, 2012
Published by: Polish Academy of Sciences, Space Research Centre
In partnership with: Paradigm Publishing Services

© 2012 Chaiyapon Keeratikasikorn, Itthi Trisirisatayawong, published by Polish Academy of Sciences, Space Research Centre
This work is licensed under the Creative Commons License.