DocumentCode
1091572
Title
On the Development of a Second-Order Bistatic Radar Cross Section of the Ocean Surface: A High-Frequency Result for a Finite Scattering Patch
Author
Gill, Eric ; Huang, Weimin ; Walsh, John
Author_Institution
Fac. of Eng. & Appl. Sci., Memorial Univ. of Newfoundland, St. John´´s, Nfld.
Volume
31
Issue
4
fYear
2006
Firstpage
740
Lastpage
750
Abstract
The development of a model for the second-order bistatic high-frequency (HF) radar cross section on an ocean surface patch remote from the transmitter and receiver is addressed. A new approach is taken that allows a direct comparison with existing monostatic cross sections for finite regions of the ocean surface. The derivation starts with a general expression for the bistatically received second-order electric field in which the scattering surface is assumed to be of small height and slope. The source field is taken to be that of a vertically polarized dipole, and it is assumed that the ocean surface can be described, as is usually done, by a Fourier series in which the coefficients are zero-mean Gaussian random variables. Subsequently, a bistatic cross section of the surface, normalized to patch area, is derived. The result is verified by the following two means: 1) the complete form of the bistatic HF radar cross section in backscattering case is shown to contain an earlier monostatic result that has, itself, been used extensively in radio oceanography applications; and 2) the bistatic electromagnetic coupling coefficient is shown to reduce exactly to the monostatic result when backscattering geometry is imposed. The model is also depicted and discussed based on simulated data
Keywords
Fourier series; Gaussian processes; electric fields; electromagnetic coupling; electromagnetic wave scattering; ocean waves; oceanographic techniques; radar cross-sections; Fourier series; backscattering geometry; bistatic HF radar cross section; bistatic electromagnetic coupling coefficient; bistatic high-frequency radar cross section; finite scattering patch; monostatic cross sections; ocean surface; radio oceanography; second-order bistatic radar cross section; second-order electric field; vertically polarized dipole; zero-mean Gaussian random variables; Backscatter; Bistatic radar; Electromagnetic scattering; Genetic expression; Hafnium; Oceans; Radar cross section; Radar scattering; Radio transmitters; Sea surface; Bistatic cross section; Doppler spectrum; high- frequency (HF) ground-wave radar;
fLanguage
English
Journal_Title
Oceanic Engineering, IEEE Journal of
Publisher
ieee
ISSN
0364-9059
Type
jour
DOI
10.1109/JOE.2006.886228
Filename
4089063
Link To Document