arXiv · 2510.26262
Optimal transmit field distribution for partially obstructed continuous radiating surfaces in near-field communication systems
Abstract
This paper deals with the optimal synthesis of aperture fields for (radiating) near-field communications in obstructed environments. A physically consistent model based on knife-edge diffraction is used to formulate the problem as a maximization in Hilbert space. The optimal solution is obtained as a matched filter that ``matches" the shape of a diffraction-induced kernel, thus linking wave propagation with signal processing methods. The framework supports hardware implementation using continuous apertures such as metasurfaces or lens antennas. This approach bridges physically grounded modeling, signal processing, and hardware design for efficient energy focusing in near-field obstructed channels.
Explore related subjects
Keep this discovery
Explore connections, maps & timelines
Francesco Verde, Donatella Darsena, Marco Di Renzo, Vincenzo Galdi. 2025-10-30. Optimal transmit field distribution for partially obstructed continuous radiating surfaces in near-field communication systems. https://arxiv.org/abs/2510.26262
Cite the original work for its findings. Save a collection to share your selection of sources.