The imaging of three-dimensional scatterers is addressed by means of a new microwave inversion algorithm that combines an Inexact Newton (IN)-based deterministic reconstruction technique with a multi-focusing approach. This choice is motivated by the capability of multi-resolution techniques to reduce non-linearity issues arising in 3D imaging problems, thus enabling the effective exploitation of local search strategies for their solution. A set of preliminary results is presented to show advantages and drawbacks of the proposed imaging methodology, as well as to compare it with state-of-the art techniques formulated in the same framework
A numerical comparison of two innovative microwave imaging strategies is presented. To effectively t...
An increasing number of practical applications of three-dimensional microwave imaging require accura...
An increasing number of practical applications of three-dimensional microwave imaging require accura...
International audienceThe imaging of three-dimensional scatterers is addressed by means of a new mic...
International audienceThe imaging of three-dimensional scatterers is addressed by means of a new mic...
International audienceThe imaging of three-dimensional scatterers is addressed by means of a new mic...
A new technique for microwave imaging of three-dimensional dielectric targets is presented in this p...
A microwave imaging method previously developed for tomographic inspection of dielectric targets is ...
International audienceA microwave imaging technique based on the integration of the Inexact-Newton m...
International audienceA microwave imaging technique based on the integration of the Inexact-Newton m...
International audienceA microwave imaging technique based on the integration of the Inexact-Newton m...
A microwave imaging method previously developed for tomographic inspection of dielectric targets is ...
A microwave imaging method previously developed for tomographic inspection of dielectric targets is ...
A novel approach for three-dimensional electromagnetic imaging is presented. This technique is a com...
Microwave imaging methods, i.e., approaches able to reconstruct the distributions of the dielectric ...
A numerical comparison of two innovative microwave imaging strategies is presented. To effectively t...
An increasing number of practical applications of three-dimensional microwave imaging require accura...
An increasing number of practical applications of three-dimensional microwave imaging require accura...
International audienceThe imaging of three-dimensional scatterers is addressed by means of a new mic...
International audienceThe imaging of three-dimensional scatterers is addressed by means of a new mic...
International audienceThe imaging of three-dimensional scatterers is addressed by means of a new mic...
A new technique for microwave imaging of three-dimensional dielectric targets is presented in this p...
A microwave imaging method previously developed for tomographic inspection of dielectric targets is ...
International audienceA microwave imaging technique based on the integration of the Inexact-Newton m...
International audienceA microwave imaging technique based on the integration of the Inexact-Newton m...
International audienceA microwave imaging technique based on the integration of the Inexact-Newton m...
A microwave imaging method previously developed for tomographic inspection of dielectric targets is ...
A microwave imaging method previously developed for tomographic inspection of dielectric targets is ...
A novel approach for three-dimensional electromagnetic imaging is presented. This technique is a com...
Microwave imaging methods, i.e., approaches able to reconstruct the distributions of the dielectric ...
A numerical comparison of two innovative microwave imaging strategies is presented. To effectively t...
An increasing number of practical applications of three-dimensional microwave imaging require accura...
An increasing number of practical applications of three-dimensional microwave imaging require accura...