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Massa, Andrea and Pastorino, Matteo and Randazzo, Andrea (2011) Optimization of the Directivity of a Monopulse Antenna with a Subarray Weighting by an Hybrid Differential Evolution Method. [Technical Report]
Azaro, Renzo and Bozza, G. and Estatico, C. and Massa, Andrea and Pastorino, Matteo and Pregnolato, Denis and Randazzo, Andrea (2006) New Results on Electromagnetic Imaging Based on the Inversion of Synthetic and Measured Scattered-Field Data. [Technical Report]
Estatico, Claudio and Bozza, Giovanni and Massa, Andrea and Pastorino, Matteo and Randazzo, Andrea (2005) A Two-Step Iterative Inexact-Newton Method for Electromagnetic Imaging of Dielectric Structures from Real Data. [Technical Report]
Caorsi, Salvatore and Massa, Andrea and Pastorino, Matteo and Randazzo, Andrea (2004) Electromagnetic Detection of Dielectric Scatterers Using Phaseless Synthetic and Real Data and the Memetic Algorithm. [Technical Report] (In Press)
Caorsi, Salvatore and Massa, Andrea and Pastorino, Matteo and Randazzo, Andrea and Rosani, Andrea (2004) A Reconstruction Procedure for Microwave Nondestructive Evaluation based on a Numerically Computed Green's Function. [Technical Report] (Submitted)
Caorsi, Salvatore and Bermani, Emanuela and Massa, Andrea and Pastorino, Matteo and Rosani, Andrea and Randazzo, Andrea (2004) A Numerical Technique for Determining the Internal Field in Biological Bodies Exposed to Electromagnetic Fields. [Technical Report]
Caorsi, Salvatore and Massa, Andrea and Pastorino, Matteo and Raffetto, Mirco and Randazzo, Andrea (2003) Detection of Buried Inhomogeneous Elliptic Cylinders by a Memetic Algorithm. [Technical Report]
Caorsi, Salvatore and Massa, Andrea and Pastorino, Matteo and Randazzo, Andrea (2003) Synthesis of sum and difference patterns for monopulse antennas by an hybrid real/integer-coded differential evolution method. [Technical Report] (In Press)
Caorsi, Salvatore and Massa, Andrea and Pastorino, Matteo and Randazzo, Andrea and Rosani, Andrea (2003) A Reconstruction Procedure for Microwave Nondestructive Evaluation based on a Numerically Computed Green's Function. [Technical Report] (In Press)