The computationally-efficient solution of non-linear and ill-posed electromagnetic inverse scattering problems (EM-ISPs) arising in several microwave imaging (MI) contexts is addressed by means of the System-by-Design (SbD) paradigm. The main concepts and guidelines of the SbD as applied to EM-ISPs are summarized, together with an example of a recent SbD implementation jointly exploiting time and space priors for yielding an accurate and robust quantitative imaging and follow-up of brain strokes. © 2024 IEEE.
System-by-Design for Inverse Problems: Recent Advances and Future Trends / Salucci, M., Lin, Z., Lusa, S., Poli, L., Polo, A., Rosatti, P., Salas Sanchez, A.A., Tosi, L., Massa, A.. - STAMPA. - (2024), pp. 937-938. (AP-S/INC-USNC-URSI 2024 Firenze, Italy 14th July - 19th July 2024) [10.1109/ap-s/inc-usnc-ursi52054.2024.10687040].
System-by-Design for Inverse Problems: Recent Advances and Future Trends
Salucci, Marco;Lusa, Samantha;Poli, Lorenzo;Polo, Alessandro;Rosatti, Pietro;Salas Sanchez, Aaron Angel;Tosi, Luca;Massa, Andrea
2024-01-01
Abstract
The computationally-efficient solution of non-linear and ill-posed electromagnetic inverse scattering problems (EM-ISPs) arising in several microwave imaging (MI) contexts is addressed by means of the System-by-Design (SbD) paradigm. The main concepts and guidelines of the SbD as applied to EM-ISPs are summarized, together with an example of a recent SbD implementation jointly exploiting time and space priors for yielding an accurate and robust quantitative imaging and follow-up of brain strokes. © 2024 IEEE.| File | Dimensione | Formato | |
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