A shape reconstruction algorithm is formulated for the multimonostatic configuration and the 2-D geometry. The imaging algorithm is based on the Kirchhoff approximation, works in the frequency domain, and exploits the singular value decomposition tool to achieve a stable solution. The effectiveness of the reconstruction algorithm is shown by processing synthetic data in the time domain generated via a finite-difference timedomain code. A performance analysis of the solution algorithm is addressed with varying host medium and measurement configurations, also by processing synthetic data for a 3-D geometry. Finally, an experimental validation of the technique is performed due to data collected by a time-domain ground-penetrating ra...
We address the problem of accurately locating buried utility segments by fusing data from multiple s...
The increasing length of the subsurface pipe causes overlapping, accumulating, and sometimes the old...
We address the problem of accurately locating buried utility segments by fusing data from multiple s...
A shape reconstruction algorithm is formulated for the multimonostatic configuration and the 2-D ge...
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 buried objects for multifrequency plane wave incidence in a ...
The problem of determining the shape of buried objects for multifrequency plane wave incidence in a ...
The problem of determining the shape of buried objects for multifrequency plane wave incidence in a ...
The problem of determining the shape of buried objects for multifrequency plane wave incidence in a ...
Ground-penetrating radar (GPR) is a widely used tool for the detection and location of buried utilit...
Ground-penetrating radar (GPR) is a widely used tool for the detection and location of buried utilit...
Ground-penetrating radar (GPR) is a widely used tool for the detection and location of buried utilit...
Ground-penetrating radar (GPR) is a widely used tool for the detection and location of buried utilit...
International audienceIn this study, comparisons are made between two imaging techniques in the cont...
We address the problem of accurately locating buried utility segments by fusing data from multiple s...
The increasing length of the subsurface pipe causes overlapping, accumulating, and sometimes the old...
We address the problem of accurately locating buried utility segments by fusing data from multiple s...
A shape reconstruction algorithm is formulated for the multimonostatic configuration and the 2-D ge...
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 buried objects for multifrequency plane wave incidence in a ...
The problem of determining the shape of buried objects for multifrequency plane wave incidence in a ...
The problem of determining the shape of buried objects for multifrequency plane wave incidence in a ...
The problem of determining the shape of buried objects for multifrequency plane wave incidence in a ...
Ground-penetrating radar (GPR) is a widely used tool for the detection and location of buried utilit...
Ground-penetrating radar (GPR) is a widely used tool for the detection and location of buried utilit...
Ground-penetrating radar (GPR) is a widely used tool for the detection and location of buried utilit...
Ground-penetrating radar (GPR) is a widely used tool for the detection and location of buried utilit...
International audienceIn this study, comparisons are made between two imaging techniques in the cont...
We address the problem of accurately locating buried utility segments by fusing data from multiple s...
The increasing length of the subsurface pipe causes overlapping, accumulating, and sometimes the old...
We address the problem of accurately locating buried utility segments by fusing data from multiple s...