Applied Electromagnetics
ELM
Research and support to businesses for a wide range of systems and components employing electromagnetic fields for communication, sensing, industrial and medical applications. Frequency ranges in RF, microwaves, mm-wave, sub-THz and optical frequencies.
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Scientific coordinators
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Research team
Research area
Research topics
- Innovative dielectric waveguides
- Low-loss microwave, mm-wave and sub-THz antennas Smart electromagnetic skin design, Optimization techniques and their application to electromagnetics. Low cost low-consumption reconfigurability. Inverse design of metal-dielectric surfaces.
- EM field-manipulating surfaces. - Smart electromagnetic skin design; - Optimization techniques and their application to electromagnetics. - Low cost low-consumption reconfigurability. - Inverse design of metal-dielectric surfaces.
- Radar systems Design, prototyping and measurement of radar systems for automotive, railway, security and industrial applications
- Advanced Antenna and RCS measurement Systems Large antennas, non-anechoic environments, Diagnostics, EM field and SAR measurements with 3D scan, UAV-based measurements (NF-FF)
- Microwave and RF thermal therapies Oncological hyperthermia, ablation, electrosurgery; Non-invasive 3D temperature reconstruction. High-precision microwave hyperthermia; low-precision RF hyperthermia
- Advanced computational predictions and inverse problems for design, imaging and diagnostics. Development of high-performance numerical methods for the modelling and optimization of complex systems, with applications to virtual prototyping, biomedical imaging, bioelectromagnetic source reconstruction, advanced diagnostic support tools and neuroimaging.