معرفی
Andrea Randazzo is a Full Professor in the Department of Naval, Electrical, Electronic and Telecommunications Engineering (DITEN) at the University of Genoa, Italy. Specializing in Electromagnetic Fields (IINF-02/A), he teaches multiple courses including Antennas, Electromagnetic Fields, and Electromagnetic Monitoring Techniques across various engineering programs such as Internet and Multimedia Engineering, Electronic Engineering, and Engineering for Natural Risk Management.
Professor Randazzo's research spans several interconnected domains within electromagnetic theory and applications:
- Antenna Systems: Specializing in antenna array diagnosis, fault detection, and advanced antenna engineering
- Medical Applications: Developing microwave-based techniques for stroke detection and monitoring, particularly for pediatric patients
- Remote Sensing: Applying FMCW radar technology for sea wave dynamics, coastal monitoring, and hydrological sensing
- Nondestructive Testing: Creating microwave imaging methods for plant diagnostics and structural monitoring
- Mathematical Methods: Innovating in inverse scattering problems using Lebesgue-space approaches and data-driven inversion techniques
His publication record demonstrates a clear trajectory toward increasingly sophisticated data-driven approaches to electromagnetic imaging, with recent work emphasizing machine learning integration, particularly CNNs for antenna array diagnosis. A significant portion of his research focuses on medical applications, especially stroke detection using microwave technologies, showing consistent development from theoretical approaches to practical implementations and numerical assessments. His work bridges theoretical electromagnetic theory with practical applications across healthcare, environmental monitoring, and industrial processes.
Professor Randazzo has supervised numerous academic projects reflected in his extensive teaching portfolio across multiple engineering programs. His research likely involves collaboration with medical institutions given the healthcare-focused applications of his work, though specific grant information is not provided in the available materials.
His laboratory work appears to focus on electromagnetic sensing and imaging systems, with particular emphasis on developing practical implementations of theoretical approaches, as evidenced by projects involving low-cost FMCW radar sensors and microwave moisture content sensors for food industry applications.



