The design of complex metasurfaces (MTS) is usually done in two steps: a) design of the surface impedance profile; b) realization of unit-cells, often using a periodic approximation. In this communication we propose an innovative approach for the comprehensive design of the MTS down to the unit-cell design. It is based on the recently introduced current-only metasurface synthesis. In the present approach, the unit-cell is designed based only on the optimized equivalent current, without having recourse to surface impedance. While maximally effective in association with current-only approaches, it can also be used with approaches aiming at the design of the impedance profile, still avoiding the periodic approximation.
Unit-cell design framework for current-based synthesis of Metasurface antennas / Pollini, Leonardo; Lattanzio, Francesco; Zucchi, Marcello; Vecchi, Giuseppe. - ELETTRONICO. - (2025), pp. 1-4. (Intervento presentato al convegno 2025 19th European Conference on Antennas and Propagation (EuCAP) tenutosi a Stoccolma (Sve) nel 30 Marzo - 04 Aprile 2025) [10.23919/eucap63536.2025.10999330].
Unit-cell design framework for current-based synthesis of Metasurface antennas
Pollini, Leonardo;Lattanzio, Francesco;Zucchi, Marcello;Vecchi, Giuseppe
2025
Abstract
The design of complex metasurfaces (MTS) is usually done in two steps: a) design of the surface impedance profile; b) realization of unit-cells, often using a periodic approximation. In this communication we propose an innovative approach for the comprehensive design of the MTS down to the unit-cell design. It is based on the recently introduced current-only metasurface synthesis. In the present approach, the unit-cell is designed based only on the optimized equivalent current, without having recourse to surface impedance. While maximally effective in association with current-only approaches, it can also be used with approaches aiming at the design of the impedance profile, still avoiding the periodic approximation.File | Dimensione | Formato | |
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https://hdl.handle.net/11583/3000389