DocumentCode :
1040034
Title :
Computation of Oceanlike Surface Thermal Emission and Bistatic Scattering With the Reduced Local Curvature Approximation
Author :
Johnson, Joel T. ; Elfouhaily, Tanos M.
Author_Institution :
Ohio State Univ., Columbus
Volume :
45
Issue :
7
fYear :
2007
fDate :
7/1/2007 12:00:00 AM
Firstpage :
2108
Lastpage :
2115
Abstract :
The reduced local curvature approximation of third order (RLCA3) is a recently proposed model for rough surface scattering that matches the Kirchhoff approximation as well as the first-order and second-order small perturbation methods in appropriate limits. Predictions of bistatic scattering, thermal emission, and reflected atmospheric brightnesses from the RLCA3 model are presented in this paper through a Monte Carlo simulation process. The surfaces considered are realizations of an oceanlike spectrum and contain features ranging from 64 to 0.5 electromagnetic wavelengths. Results are compared with predictions from the commonly applied ldquotwo-scalerdquo theory of sea emission, as well as results from a previous similar study using the small slope approximation (SSA) of Voronovich. Results show a high level of agreement between RLCA3 and SSA predicted bistatic scattering patterns, but appreciable differences in predicted surface brightnesses, particularly in the third Stokes´ parameter.
Keywords :
brightness; electromagnetic wave scattering; emissivity; ocean temperature; remote sensing; Kirchhoff approximation; Monte Carlo simulation; RLCA3; bistatic scattering; oceanlike spectrum; oceanlike surface thermal emission computation; reduced local curvature approximation; reflected atmospheric brightnesses; rough surface scattering; sea emission two-scale theory; small perturbation methods; small slope approximation; surface brightnesses; third Stokes parameter; Atmospheric modeling; Atmospheric waves; Brightness; Electromagnetic scattering; Kirchhoff´s Law; Ocean temperature; Perturbation methods; Rough surfaces; Sea surface; Surface roughness; Microwave radiometry; rough surface scattering; thermal emission;
fLanguage :
English
Journal_Title :
Geoscience and Remote Sensing, IEEE Transactions on
Publisher :
ieee
ISSN :
0196-2892
Type :
jour
DOI :
10.1109/TGRS.2006.890420
Filename :
4261059
Link To Document :
بازگشت