DocumentCode
2842377
Title
Some issues on theoretical modeling and data validation of satellite-borne microwave remote sensing
Author
Jin, Ya-Qiu
Author_Institution
WSRSC, Fudan Univ., Shanghai, China
fYear
1998
fDate
1998
Firstpage
63
Lastpage
66
Abstract
In this paper, research progress in Fudan WSRSC during recent four years on theoretical modeling and data validation is reported. A theoretical model of multi-level, non-spherical scatterers is developed for completely polarized scattering in SAR remote sensing image. The Mueller matrix, coherency matrix and its eigen-analysis are discussed. Comprehensive vector radiative transfer (VRT) theory and numerical approaches for multi-level, non-spherical and densely clustered scatterers are developed for the earth surfaces such as snowpack, vegetation canopy, sea surface, etc. Numerical results simulate the observations of DMSP SSM/I, ERS and other microwave remote sensing sensors. The algorithm and retrieval method of data calibration/validation for satellite-borne microwave remote sensing are discussed with theoretical simulations. Correlation of active and passive remote sensing such as ERS and SSM/I and are simulated and discussed
Keywords
electromagnetic wave scattering; microwave imaging; radiative transfer; remote sensing; DMSP SSM/I; ERS; Earth surface; Fudan WSRSC; Mueller matrix; SAR image; coherency matrix; data calibration; data validation; eigen-analysis; model; multi-level nonspherical scatterer; numerical algorithm; polarized scattering; satellite-borne microwave remote sensing; simulation; vector radiative transfer; Clustering algorithms; Earth; Information retrieval; Microwave sensors; Numerical simulation; Polarization; Remote sensing; Scattering; Sea surface; Vegetation mapping;
fLanguage
English
Publisher
ieee
Conference_Titel
Microwave and Millimeter Wave Technology Proceedings, 1998. ICMMT '98. 1998 International Conference on
Conference_Location
Beijing
Print_ISBN
0-7803-4308-5
Type
conf
DOI
10.1109/ICMMT.1998.768225
Filename
768225
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