DocumentCode
2580946
Title
Influence of sea surface roughness on the electromagnetic wave propagation in the duct environment
Author
Zhao, Xiaofeng ; Huang, Sixun ; Fan, Hongjun
Author_Institution
Inst. of Meteorol., PLA Univ. of Sci. & Tech., Nanjing, China
Volume
1
fYear
2010
fDate
28-31 Aug. 2010
Firstpage
467
Lastpage
470
Abstract
This paper deals with a study of the influence of sea surface roughness on the electromagnetic wave propagation in the duct environment. The problem of electromagnetic wave propagation is modeled by using the parabolic equation method. The roughness of the sea surface is computed by modifying the smooth surface Fresnel reflection coefficient to account for the reduction in the specular reflection due to the roughness resulting from sea wind speed. The propagation model is solved by the mixed Fourier split-step algorithm. Numerical experiments indicate that wind-driven roughened sea surface has an impact on the electromagnetic wave propagation in the duct environment, and the strength is intensified along with the increment of sea wind speeds and/or the operating frequencies. In a fixed duct environment, however, proper disposition of the transmitter could reduce these impacts.
Keywords
Fourier transforms; atmospheric boundary layer; atmospheric electromagnetic wave propagation; ocean waves; wind; duct environment; electromagnetic wave propagation; mixed Fourier split step algorithm; parabolic equation method; sea surface roughness effects; sea wind speed; specular reflection reduction; surface Fresnel reflection coefficient; wind induced sea roughness; Ducts; Mathematical model; Rough surfaces; Sea surface; Surface impedance; Surface roughness; Wind speed; Electromagnetic wave propagation; evaporation duct; parabolic equation; sea wind speed;
fLanguage
English
Publisher
ieee
Conference_Titel
Geoscience and Remote Sensing (IITA-GRS), 2010 Second IITA International Conference on
Conference_Location
Qingdao
Print_ISBN
978-1-4244-8514-7
Type
conf
DOI
10.1109/IITA-GRS.2010.5602649
Filename
5602649
Link To Document