This paper deals with the problem of determining the shape of unknown perfectly conducting infinitely long cylinders, starting from the knowledge of the scattered electric far field under the incidence of plane waves with a fixed angle of incidence and varying frequency. The problem is formulated as a nonlinear inverse one by searching for a compact support distribution accounting for the objects contour. The nonlinear unknown to data mapping is then linearized by means of the Kirchhoff approximation, which reduces it into a Fourier transform relationship. Then, the Fourier transform inversion from incomplete data is dealt with by means of the singular value decomposition (SVD) approach and the features of the reconstructable unknowns are i...
The problem of reconstructing the shape of buried metallic objects for multifrequency plane wave inc...
The problem of reconstructing the shape of buried metallic objects for multifrequency plane wave inc...
The problem of determining the shape of three dimensional perfect electric conducting (PEC) objects ...
This paper deals with the problem of determining the shape of unknown perfectly conducting infinitel...
This paper deals with the problem of determining the shape of unknown perfectly conducting infinitel...
This paper deals with the reconstruction of the shape of unknown perfectly conducting objects from t...
This paper deals with the reconstruction of the shape of unknown perfectly conducting objects from t...
This paper deals with the reconstruction of the shape of unknown perfectly conducting objects from t...
The reconstruction of the shape of "strongly scattering" objects from the knowledge of the scattere...
A method is provided for reconstruction of the shape of perfectly conducting objects in a homogeneou...
A method is provided for reconstruction of the shape of perfectly conducting objects in a homogeneou...
A method is provided for reconstruction of the shape of perfectly conducting objects in a homogeneou...
The problem of determining the shape of perfectly conducting objects from knowledge of the scattered...
The problem of determining the shape of perfectly conducting objects from knowledge of the scattered...
The problem of determining the shape of perfectly conducting objects from knowledge of the scattered...
The problem of reconstructing the shape of buried metallic objects for multifrequency plane wave inc...
The problem of reconstructing the shape of buried metallic objects for multifrequency plane wave inc...
The problem of determining the shape of three dimensional perfect electric conducting (PEC) objects ...
This paper deals with the problem of determining the shape of unknown perfectly conducting infinitel...
This paper deals with the problem of determining the shape of unknown perfectly conducting infinitel...
This paper deals with the reconstruction of the shape of unknown perfectly conducting objects from t...
This paper deals with the reconstruction of the shape of unknown perfectly conducting objects from t...
This paper deals with the reconstruction of the shape of unknown perfectly conducting objects from t...
The reconstruction of the shape of "strongly scattering" objects from the knowledge of the scattere...
A method is provided for reconstruction of the shape of perfectly conducting objects in a homogeneou...
A method is provided for reconstruction of the shape of perfectly conducting objects in a homogeneou...
A method is provided for reconstruction of the shape of perfectly conducting objects in a homogeneou...
The problem of determining the shape of perfectly conducting objects from knowledge of the scattered...
The problem of determining the shape of perfectly conducting objects from knowledge of the scattered...
The problem of determining the shape of perfectly conducting objects from knowledge of the scattered...
The problem of reconstructing the shape of buried metallic objects for multifrequency plane wave inc...
The problem of reconstructing the shape of buried metallic objects for multifrequency plane wave inc...
The problem of determining the shape of three dimensional perfect electric conducting (PEC) objects ...