In this paper, a subsurface imaging configuration is considered, with the goal of retrieving the quantitative dielectric properties of buried targets from scattered electric field measurements performed by a set of antennas above the soil. The acquired scattered-field data are processed by a nonlinear inverse-scattering approach in variable-exponent Lebesgue spaces able to jointly exploit multifrequency data, which is extended here for the first time to subsurface imaging problems. Numerical simulations are presented as a preliminary assessment of the proposed inverse-scattering technique, where a multistatic ground penetrating radar configuration is adopted
The study, development, and analysis of innovative inversion techniques for the detection and imagin...
International audienceThis paper deals with two different quantitative inversion algorithms for reco...
In this work, an inverse-scattering technique for through-the-wall imaging is presented and validate...
The problem of reconstructing dielectric structures embedded in stratified media is addressed in thi...
In this paper, a microwave inverse-scattering technique based on the inversion of S-parameter measur...
An innovative nonlinear inverse scattering approach in variable exponent Lebesgue spaces is proposed...
Ground Penetrating Radar (GPR) is a non-invasive imaging technique widely adopted in subsurface pros...
An analysis of the performance of a multi-frequency inverse-scattering algorithm for imaging of buri...
A novel two-step inverse-scattering technique is proposed for through-the-wall microwave imaging. Th...
Abstract—This paper proposes a new inverse method for microwave-based subsurface sensing of lossy di...
A microwave characterization technique to inspect subsurface scenarios is proposed and numerically a...
A novel approach for electromagnetic imaging of underground scenarios is proposed in this paper. The...
An approach for electromagnetic subsurface sensing is proposed in this contribution. The inverse sca...
An electromagnetic inverse scattering approach for imaging of shallow subsurface objects is reported...
An electromagnetic inverse scattering procedure for the reconstruction of shallow buried objects in ...
The study, development, and analysis of innovative inversion techniques for the detection and imagin...
International audienceThis paper deals with two different quantitative inversion algorithms for reco...
In this work, an inverse-scattering technique for through-the-wall imaging is presented and validate...
The problem of reconstructing dielectric structures embedded in stratified media is addressed in thi...
In this paper, a microwave inverse-scattering technique based on the inversion of S-parameter measur...
An innovative nonlinear inverse scattering approach in variable exponent Lebesgue spaces is proposed...
Ground Penetrating Radar (GPR) is a non-invasive imaging technique widely adopted in subsurface pros...
An analysis of the performance of a multi-frequency inverse-scattering algorithm for imaging of buri...
A novel two-step inverse-scattering technique is proposed for through-the-wall microwave imaging. Th...
Abstract—This paper proposes a new inverse method for microwave-based subsurface sensing of lossy di...
A microwave characterization technique to inspect subsurface scenarios is proposed and numerically a...
A novel approach for electromagnetic imaging of underground scenarios is proposed in this paper. The...
An approach for electromagnetic subsurface sensing is proposed in this contribution. The inverse sca...
An electromagnetic inverse scattering approach for imaging of shallow subsurface objects is reported...
An electromagnetic inverse scattering procedure for the reconstruction of shallow buried objects in ...
The study, development, and analysis of innovative inversion techniques for the detection and imagin...
International audienceThis paper deals with two different quantitative inversion algorithms for reco...
In this work, an inverse-scattering technique for through-the-wall imaging is presented and validate...