An increasing number of practical applications of three-dimensional microwave imaging require accurate and efficient inversion\ntechniques. In this context, a full-wave 3D inverse-scattering method, aimed at characterizing dielectric targets, is described in\nthis paper. In particular, the inversion approach has a Newton-based structure, in which the internal linear solver is a conjugate\ngradient-like algorithm in lp spaces. The presented results, which include the inversion of both numerical and experimental\nscattered-field data obtained in the presence of homogeneous and in homogeneous targets, validate the reconstruction\ncapabilities of the proposed technique.
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