A 1-to-8 Fully Modular Stacked SIW Antenna Array for Millimeter-Wave Applications
Metadatos
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IEEE
Materia
Antenna array Millimeter waves Modularity SIW
Date
2022-07-19Referencia bibliográfica
Segura-Gómez, Cleofás; Palomares-Caballero, Ángel; Padilla, Pablo (2022): A 1-to-8 Fully Modular Stacked SIW Antenna Array for Millimeter-Wave Applications. TechRxiv. Preprint. [https://doi.org/10.36227/techrxiv.18134057.v2]
Patrocinador
Spanish Government; European Commission PID2020-112545RB-C54 Junta de Andalucia B-TIC-402-UGR18 A-TIC-608-UGR20 P18.RT.4830 PYC20-RE-012-UGR FPU20/00256 FPU18/01965Résumé
This paper presents a vertically stacked SIW antenna array
that enables different array configurations with the minimum number
of SIW layers. This achievement lies in the modular feature offered by
the proposed design. Specifically, 4 distinct array configurations can be
produced with only 3 different design of SIW layers. Depending on the
number of SIW layers employed in the stacked antenna, the directivity
in the E-plane is modified. To obtain an equal and in-phase power
distribution among the array elements, H- and E-plane corporate feeding
networks are efficiently implemented in each array configuration. Array
configurations of 1, 2, 4 and 8 radiating layers are offered by the proposed
modular array, where each radiating layer is formed by 8 H-plane horn
antennas. The simulated directivity for the array configurations ranges
from 15.8 dBi to 23.8 dBi and the main beam direction remains fixed along
the operating frequency range. The array design has been manufactured
and agreement between simulated and measured results are observed.
The measured impedance bandwidth in all the array configurations is
from 35 GHz to 41 GHz (15.79% bandwidth) with a reduction in the
E-plane beamwidth as the number of radiating layers increases.