DocumentCode
2852761
Title
Electromagnetic Scattering from Multilayer Rough Surfaces Separated by Arbitrary Dielectric Profiles
Author
Kuo, Chih-Hao ; Moghaddam, Mahta
Author_Institution
Dept. of Electr. Eng. & Comput. Sci., Univ. of Michigan, Ann Arbor, MI
fYear
2006
fDate
July 31 2006-Aug. 4 2006
Firstpage
454
Lastpage
457
Abstract
Radar remote sensing of soil moisture content at low frequencies requires an accurate scattering model of realistic soils, which often involves multilayer rough surfaces and inhomogeneous dielectric profiles. In this paper, a hybrid analytical/numerical solution to two- dimensional scattering from multilayer rough surfaces separated by arbitrary dielectric profiles based on the extended boundary condition method (EBCM) and scattering matrix technique is presented. The reflection and transmission matrices of a rough interface are constructed using EBCM. The inhomogeneous dielectric profile is modeled as a stack of piecewise homogeneous dielectric thin layers. The scattering matrices of an inhomogeneous dielectric profile are computed by recursively cascading reflection and transmission matrices of individual dielectric interfaces from the bottom dielectric interface to the top interface. The interactions between the rough interfaces and the inhomogeneous dielectric profile are taken into account by applying the generalized scattering matrix technique, hi numerical simulations, the actual field-collected soil moisture data are used, hi particular, the dielectric profiles during both dry and wet ground conditions are examined. The numerical simulations are performed to investigate both bistatic scattering coefficients and copolarized phase difference due to different subsurface roughness parameters and ground conditions. Simulation results show that the bistatic scattering coefficients at low frequencies are sensitive to subsurface roughness parameters and copolarized phase difference strongly depends on soil moisture contents.
Keywords
hydrological techniques; moisture; numerical analysis; remote sensing by radar; soil; terrestrial electricity; 2D scattering model; arbitrary dielectric profiles; copolarized phase difference; electromagnetic scattering; extended boundary condition method; multilayer rough surfaces; radar remote sensing; scattering matrix technique; soil moisture content; Dielectrics; Electromagnetic scattering; Frequency; Nonhomogeneous media; Numerical simulation; Radar scattering; Reflection; Rough surfaces; Soil moisture; Surface roughness;
fLanguage
English
Publisher
ieee
Conference_Titel
Geoscience and Remote Sensing Symposium, 2006. IGARSS 2006. IEEE International Conference on
Conference_Location
Denver, CO
Print_ISBN
0-7803-9510-7
Type
conf
DOI
10.1109/IGARSS.2006.121
Filename
4241268
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