A diffraction tomographic (DT) algorithm has been proposed for detecting three-dimensional (3-D) dielectric objects buried in a lossy ground, using electric dipoles or magnetic dipoles as transmitter and receiver, where the air-earth interface has been taken into account and the background is lossy. To derive closed-form reconstruction formulas, an approximate generalized Fourier transform is introduced. Using this algorithm, the locations, shapes, and dielectric properties of buried objects can be well reconstructed under the low-contrast condition, and the objects can be well detected even when the contrast is high. Due to the use of fast Fourier transforms to implement the problem, the proposed algorithm is fast and quite tolerant to the...
The problem of subsurface imaging with Ground Penetrating Radar (GPR) is a challenging one. Due to ...
Ground Penetrating Radar (GPR) is a proven method of imaging the near subsurface. Most GPR interpret...
In this paper, an experimental set-up for tomographic imaging based on interrogating microwaves is p...
New diffraction topographic (DT) algorithms for imaging three-dimensional (3D) buried objects are pr...
International audienceThe detection and identification of buried inhomogeneities using electromagnet...
International audienceThe detection and identification of buried inhomogeneities using electromagnet...
International audienceIn this paper, we study the mathematical imaging problem of diffraction tomogr...
International audienceThe detection and identification of buried inhomogeneities using electromagnet...
International audienceThe non-destructive evaluation of a defect affecting a metal half-space from t...
International audienceThe detection and identification of buried inhomogeneities using electromagnet...
It is known that the extended Born approximation (ExBorn) is much faster than the method of moments ...
An efficient method to reconstruct the dielectric objects buried in the lossy earth using the Born a...
The theory of diffraction tomography for two-dimensional objects within the Born approximation is pr...
Microwave diffraction tomography allows to obtain a cross-sectional image of the dielectric properti...
International audienceOne key question when extending wave imaging algorithms to strongly attenuatin...
The problem of subsurface imaging with Ground Penetrating Radar (GPR) is a challenging one. Due to ...
Ground Penetrating Radar (GPR) is a proven method of imaging the near subsurface. Most GPR interpret...
In this paper, an experimental set-up for tomographic imaging based on interrogating microwaves is p...
New diffraction topographic (DT) algorithms for imaging three-dimensional (3D) buried objects are pr...
International audienceThe detection and identification of buried inhomogeneities using electromagnet...
International audienceThe detection and identification of buried inhomogeneities using electromagnet...
International audienceIn this paper, we study the mathematical imaging problem of diffraction tomogr...
International audienceThe detection and identification of buried inhomogeneities using electromagnet...
International audienceThe non-destructive evaluation of a defect affecting a metal half-space from t...
International audienceThe detection and identification of buried inhomogeneities using electromagnet...
It is known that the extended Born approximation (ExBorn) is much faster than the method of moments ...
An efficient method to reconstruct the dielectric objects buried in the lossy earth using the Born a...
The theory of diffraction tomography for two-dimensional objects within the Born approximation is pr...
Microwave diffraction tomography allows to obtain a cross-sectional image of the dielectric properti...
International audienceOne key question when extending wave imaging algorithms to strongly attenuatin...
The problem of subsurface imaging with Ground Penetrating Radar (GPR) is a challenging one. Due to ...
Ground Penetrating Radar (GPR) is a proven method of imaging the near subsurface. Most GPR interpret...
In this paper, an experimental set-up for tomographic imaging based on interrogating microwaves is p...