An increasing number of practical applications of three-dimensional microwave imaging require accurate and efficient inversion techniques. In this context, a full-wave 3D inverse-scattering method, aimed at characterizing dielectric targets, is described in this paper. In particular, the inversion approach has a Newton-based structure, in which the internal linear solver is a conjugate gradient-like algorithm in lp spaces. The presented results, which include the inversion of both numerical and experimental scattered-field data obtained in the presence of homogeneous and inhomogeneous targets, validate the reconstruction capabilities of the proposed technique
In this paper, a microwave imaging technique for nondestructive testing (NDT) of dielectric structur...
The imaging of three-dimensional scatterers is addressed by means of a new microwave inversion algor...
In this paper a new inverse-scattering based reconstruction method is proposed. The aim of the appro...
An increasing number of practical applications of three-dimensional microwave imaging require accura...
A microwave imaging method previously developed for tomographic inspection of dielectric targets is ...
A full-wave three-dimensional microwave imaging approach is proposed in this paper. The method is ba...
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 ...
In this paper, a microwave imaging method able to inspect three-dimensional configurations is propos...
A new technique for microwave imaging of three-dimensional dielectric targets is presented in this p...
The reconstruction of the distributions of the dielectric properties of unknown targets by using int...
A three-dimensional microwave imaging inversion algorithm is proposed in this paper. The developed a...
As it is well known, the realization of imaging systems working at microwave frequencies requires th...
International audienceIn optical or microwave computational tomography, the sample permittivity is r...
An approach to solve the inverse scattering problem for imaging applications is presented. The propo...
In this paper, a microwave imaging technique for nondestructive testing (NDT) of dielectric structur...
The imaging of three-dimensional scatterers is addressed by means of a new microwave inversion algor...
In this paper a new inverse-scattering based reconstruction method is proposed. The aim of the appro...
An increasing number of practical applications of three-dimensional microwave imaging require accura...
A microwave imaging method previously developed for tomographic inspection of dielectric targets is ...
A full-wave three-dimensional microwave imaging approach is proposed in this paper. The method is ba...
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 ...
In this paper, a microwave imaging method able to inspect three-dimensional configurations is propos...
A new technique for microwave imaging of three-dimensional dielectric targets is presented in this p...
The reconstruction of the distributions of the dielectric properties of unknown targets by using int...
A three-dimensional microwave imaging inversion algorithm is proposed in this paper. The developed a...
As it is well known, the realization of imaging systems working at microwave frequencies requires th...
International audienceIn optical or microwave computational tomography, the sample permittivity is r...
An approach to solve the inverse scattering problem for imaging applications is presented. The propo...
In this paper, a microwave imaging technique for nondestructive testing (NDT) of dielectric structur...
The imaging of three-dimensional scatterers is addressed by means of a new microwave inversion algor...
In this paper a new inverse-scattering based reconstruction method is proposed. The aim of the appro...