A single-layer metallo-dielectric superstructure for enhancing the performances of EBG cavity antenna

A novel single-layer metallo-dielectric superstructure is proposed in this paper. It is constructed by two asymmetric unit- cells optimally arranged on the same layer to construct a partially reflective surface to be placed over a multilayer microstrip slot antenna named feed antenna for enhancing i...

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Veröffentlicht in:Journal of Electrical Engineering 2021-02, Vol.72 (1), p.53-60
Hauptverfasser: Chaabane, Abdelhalim, Attia, Hussein, Djahli, Farid, Denidni, Tayeb A.
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creator Chaabane, Abdelhalim
Attia, Hussein
Djahli, Farid
Denidni, Tayeb A.
description A novel single-layer metallo-dielectric superstructure is proposed in this paper. It is constructed by two asymmetric unit- cells optimally arranged on the same layer to construct a partially reflective surface to be placed over a multilayer microstrip slot antenna named feed antenna for enhancing its performances. The radiation is expected to be maximum at the center of the formed layer. Thus, to maintain a high-gain performance, the unit-cells placed at the center are designed to provide a quasi-optimal reflection phase with high reflectivity at the frequency band of interest. A prototype of the proposed antenna operating at 10 GHz with overall size of 2.133λ ×2.133λ ×0.56λ is successfully designed and fabricated. The calculated and measured antenna gain results indicate that the proposed antenna exhibits a wider radiation bandwidth performance of about 41.15% and 36.15%, respectively.
doi_str_mv 10.2478/jee-2021-0008
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source De Gruyter Open Access Journals; EZB-FREE-00999 freely available EZB journals
subjects Antenna gain
Antennas
Bandwidths
electromagnetic-band-gap cavity antenna (ECA)
equivalent circuit
Frequencies
High gain
Metallography
Microstrip antennas
Monolayers
Multilayers
Optimization
single layer partially reflective surface (PRS)
Slot antennas
Superstructures
wide radiation bandwidth
wideband and high gain performances
title A single-layer metallo-dielectric superstructure for enhancing the performances of EBG cavity antenna
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