Metasurface Dome for Above-the-Horizon Grating Lobes Reduction in 5G-NR Systems

Fuente: arXiv
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Autori principali: Ramaccia, Davide, Barbuto, Mirko, Monti, Alessio, Vellucci, Stefano, Massagrande, Claudio, Toscano, Alessandro, Bilotti, Filiberto
Natura: Preprint
Pubblicazione: 2025
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author Ramaccia, Davide
Barbuto, Mirko
Monti, Alessio
Vellucci, Stefano
Massagrande, Claudio
Toscano, Alessandro
Bilotti, Filiberto
author_facet Ramaccia, Davide
Barbuto, Mirko
Monti, Alessio
Vellucci, Stefano
Massagrande, Claudio
Toscano, Alessandro
Bilotti, Filiberto
contents The use of 5G New Radio (NR) spectrum around 26 GHz is currently raising the quest on its compatibility with the well-established Earth Exploration-Satellite Service (EESS), which may be blinded by the spurious radiation emitted Above-the-Horizon (AtH) by Base Station (BS) antennas. Indeed, AtH grating lobes are often present during cell scanning due to the large inter-element spacing in BS array antennas for achieving higher gains with a reduced number of RF chains. In this letter, we propose an approach based on an electrically thin metasurface-based dome for the reduction of AtH grating lobes in 5G-NR BS antennas. The proposed scanning range shifting approach exploits the natural lower amplitude of the grating lobes when the antenna array scans in an angular region closer to the broadside direction. The grating lobe reduction is here demonstrated considering a 1x4 phased linear antenna array operating under dual-liner 45deg-slant polarization. A simple design procedure for designing the metasurface dome is reported, together with the antenna performances, evaluated through a proper set of numerical experiments. It is shown that the grating lobe radiation towards the satellite region is significantly reduced, whereas the overall insertion loss is moderate.
format Preprint
id arxiv_https___arxiv_org_abs_2502_03089
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle Metasurface Dome for Above-the-Horizon Grating Lobes Reduction in 5G-NR Systems
Ramaccia, Davide
Barbuto, Mirko
Monti, Alessio
Vellucci, Stefano
Massagrande, Claudio
Toscano, Alessandro
Bilotti, Filiberto
Optics
The use of 5G New Radio (NR) spectrum around 26 GHz is currently raising the quest on its compatibility with the well-established Earth Exploration-Satellite Service (EESS), which may be blinded by the spurious radiation emitted Above-the-Horizon (AtH) by Base Station (BS) antennas. Indeed, AtH grating lobes are often present during cell scanning due to the large inter-element spacing in BS array antennas for achieving higher gains with a reduced number of RF chains. In this letter, we propose an approach based on an electrically thin metasurface-based dome for the reduction of AtH grating lobes in 5G-NR BS antennas. The proposed scanning range shifting approach exploits the natural lower amplitude of the grating lobes when the antenna array scans in an angular region closer to the broadside direction. The grating lobe reduction is here demonstrated considering a 1x4 phased linear antenna array operating under dual-liner 45deg-slant polarization. A simple design procedure for designing the metasurface dome is reported, together with the antenna performances, evaluated through a proper set of numerical experiments. It is shown that the grating lobe radiation towards the satellite region is significantly reduced, whereas the overall insertion loss is moderate.
title Metasurface Dome for Above-the-Horizon Grating Lobes Reduction in 5G-NR Systems
topic Optics
url https://arxiv.org/abs/2502.03089