The problem of synthesizing a slant +/-45 [deg] dual-polarization waveguide array with wide scan capabilities for 5G applications is addressed in this work. The exploitation of an advanced low-profile wide-angle impedance matching (WAIM) superstrate is considered to achieve such a goal, and an innovative system-by-design (SbD)-inspired strategy is customized to the solution of the arising synthesis problem. The results of an extensive full-wave numerical validation are presented to illustrate the effectiveness and performance of the resulting arrangement in terms of scan range, impedance and gain stability, and port isolation.
Wide-angle Scanning Metasurface-Enhanced Array for Next-Generation Communications / Oliveri, G.; Salucci, M.; Lombardi, R.; Flamini, R.; Mazzucco, C.; Verzura, S.; Massa, A.. - STAMPA. - (2021), pp. 725-726. (Intervento presentato al convegno 2021 IEEE International Symposium on Antennas and Propagation and USNC-URSI Radio Science Meeting (APS/URSI) tenutosi a Singapore nel 4th-10th December 2021) [10.1109/APS/URSI47566.2021.9703824].
Wide-angle Scanning Metasurface-Enhanced Array for Next-Generation Communications
Oliveri, G.;Salucci, M.;Lombardi, R.;Flamini, R.;Massa, A.
2021-01-01
Abstract
The problem of synthesizing a slant +/-45 [deg] dual-polarization waveguide array with wide scan capabilities for 5G applications is addressed in this work. The exploitation of an advanced low-profile wide-angle impedance matching (WAIM) superstrate is considered to achieve such a goal, and an innovative system-by-design (SbD)-inspired strategy is customized to the solution of the arising synthesis problem. The results of an extensive full-wave numerical validation are presented to illustrate the effectiveness and performance of the resulting arrangement in terms of scan range, impedance and gain stability, and port isolation.File | Dimensione | Formato | |
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