DocumentCode :
840050
Title :
On rewriting the imaging mechanism of underwater bottom topography by synthetic aperture radar as a Volterra series expansion
Author :
Inglada, Jordi ; Garello, René
Author_Institution :
Departement Image et Traitement de l´´Inf., Ecole Nat. Superieure des Telecommun. de Bretagne, Brest, France
Volume :
27
Issue :
3
fYear :
2002
fDate :
7/1/2002 12:00:00 AM
Firstpage :
665
Lastpage :
674
Abstract :
Ocean surface current gradients can be imaged by real and synthetic aperture radar (RAR/SAR) due to the so-called hydrodynamic modulation mechanism. This is the reason why underwater bottom topography and internal waves are visible on radar images. Several physical models exist for this imaging mechanism. When trying to obtain current information from SAR images, a problem arises: the imaging mechanism can be nonlinear. We propose to rewrite the classical modeling of the SAR underwater bottom topography imaging mechanism by using a Volterra series expansion. The Volterra model can be seen as a tool allowing us to study whether the imaging mechanism can be inverted or not. It is a transposition of a well-studied physical problem into a more explicit expression. The conditions for the inversion of the Volterra model are presented and a scheme for estimating the bathymetry from SAR images is described. The main property of the inversion algorithm is its independence from the physical model used for the mechanism
Keywords :
Volterra series; bathymetry; oceanographic techniques; radar imaging; remote sensing by radar; seafloor phenomena; synthetic aperture radar; SAR; Volterra series expansion; action balance equation; bathymetry; hydrodynamic modulation mechanism; imaging mechanism; inversion algorithm; ocean surface current gradients; physical model; synthetic aperture radar; underwater bottom topography; wave-current interaction; Equations; Hydrodynamics; Optical imaging; Radar imaging; Rough surfaces; Sea measurements; Sea surface; Surface roughness; Surface topography; Synthetic aperture radar;
fLanguage :
English
Journal_Title :
Oceanic Engineering, IEEE Journal of
Publisher :
ieee
ISSN :
0364-9059
Type :
jour
DOI :
10.1109/JOE.2002.1040949
Filename :
1040949
Link To Document :
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