A Method to Use Modis Water Vapor Products For Correction of Atmospheric-Induced Phase in Interferogram
Open Access
|Jan 2012References
- Aobpaet, A., Cuenca, M., Hooper, A., Trisirisatayawong, I. (2010). Land subsidence evaluation using InSAR time series analysis in Bangkok metropolitan area.Frascati, Italy.
- 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.
- Cutberto, U. P., & Wilver, E. S. (2010). An accuracy assessment of spaceborne x-band (TerraSAR-X) spotlight mode InSAR DEMs.Leicester, UK.
- Emardson, T., Simons, M., & Webb, F. (2003). Neutral atmospheric delay in interferometric sysnthetic aperture radar applications: Statistical description and mitigation., 2231.
- Galloway, D., & Hoffman, J. (2007). The application of satellite differential SAR interferometry-derived ground displacements in hydrogeology.(1), 133-154.
- Gao, B. C., & Kaufman, Y. (2003). Water vapor retrievals using Moderate Resolution Imaging Spectroradiometer (MODIS) near-infrared channels.(D13, 4389).
- Hanssen, R. F., Weckwerth, T. M., Zebker, H. A., & Klees, R. (1999). High-resolution water vapor mapping from interferometric radar measurements.(5406), 1297-1299.
- Hanssen, R. (2001).Kluwer Academic Publishers: Dordrecht.
- 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.
- Kos, T., Botincan, M., & Markezic, I. (2008). Estimation of Tropospheric Delay Models compliance.Zadar, Croatia.
- Li, Z., Muller, J., Cross, P. (2003). Tropospheric correction techniques in repeat-pass SAR interferometry., ESA ESRIN. Frascati, Italy.
- 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.
- 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.
- 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.
- Mendes, V. (1999). Modeling the neutral-atmosphere propagation delay in radiometric space techniques.New Brunswick, Canada: University of New Brunswick.
- Phienwej, N. G. (2006). Bangkok Land Subsidence., 82 (4), 187-201.
- Poncos, V., & Dana, I. (2008). Interferometric Generation of Digital Elevation Models for Urban Areas Using TerraSAR-X.
- 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.
- Rabus, B. E. (2003). The shuttle radar topography mission—a new class of digital elevation models acquired by spaceborne radar., 241-262.
- Saastamoinen, J. (1972). Atmospheric correction for the troposphere and stratosphere in radio ranging of satellites., (pp. 247-251).
- 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.
- 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
Keywords:
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© 2012 Chaiyapon Keeratikasikorn, Itthi Trisirisatayawong, published by Polish Academy of Sciences, Space Research Centre
This work is licensed under the Creative Commons License.