Broadband millimeter-wave metasurface antenna array with printed ridge gap waveguide for high front-to-back ratio

A novel broadband metasurface (MTS) antenna array with high front-to-back ratio (FBR) is proposed for 28 GHz millimeter-wave applications. With slot pairs loaded on patch cells, an aperture-coupled slotted-mushroom MTS antenna is designed to obtain broadband radiation characteristics with a compact...

Full description

Saved in:
Bibliographic Details
Main Authors: Hao Yi, Yajie Mu, Jiaqi Han, Long Li
Format: Article
Language:English
Published: KeAi Communications Co., Ltd. 2023-05-01
Series:Journal of Information and Intelligence
Subjects:
Online Access:http://www.sciencedirect.com/science/article/pii/S2949715922000026
Tags: Add Tag
No Tags, Be the first to tag this record!
_version_ 1849398344915353600
author Hao Yi
Yajie Mu
Jiaqi Han
Long Li
author_facet Hao Yi
Yajie Mu
Jiaqi Han
Long Li
author_sort Hao Yi
collection DOAJ
description A novel broadband metasurface (MTS) antenna array with high front-to-back ratio (FBR) is proposed for 28 GHz millimeter-wave applications. With slot pairs loaded on patch cells, an aperture-coupled slotted-mushroom MTS antenna is designed to obtain broadband radiation characteristics with a compact size. To suppress the backward radiation of this antenna, the printed ridge gap waveguide (PRGW) technology with a perfect magnetic conductor (PMC) shielding made of mushroom unit-cells underneath the microstrip feeding line is applied. On this basis, a 4 × 4 MTS antenna array with the PRGW feed network is developed. Simulated results show that the FBR can be highly improved by over 16 dB within the entire bandwidth. To validate the design, a prototype of the proposed antenna is fabricated. Measured results show that an FBR greater than 28 dB can be obtained over a 24% impedance bandwidth (from 24.9 GHz to 31.7 GHz) with the reflection coefficient less than −10 dB. The measured antenna gain ranges from 17 dBi to 19.2 dBi and the corresponding measured aperture efficiencies are 35% and 45.6%. The measured results also suggest that the proposed MTS antenna possesses −35 dB cross-polarization level and stable radiation patterns. In addition, the proposed antenna remains a very low profile of 1.7 mm (0.17λ0 at 28 GHz). All the achieved features indicate that the proposed MTS antenna is an important candidate for B5G and 6G wireless communication.
format Article
id doaj-art-b007226ce84d4333a8fd7c5f91655d73
institution Kabale University
issn 2949-7159
language English
publishDate 2023-05-01
publisher KeAi Communications Co., Ltd.
record_format Article
series Journal of Information and Intelligence
spelling doaj-art-b007226ce84d4333a8fd7c5f91655d732025-08-20T03:38:38ZengKeAi Communications Co., Ltd.Journal of Information and Intelligence2949-71592023-05-0111112210.1016/j.jiixd.2022.09.001Broadband millimeter-wave metasurface antenna array with printed ridge gap waveguide for high front-to-back ratioHao Yi0Yajie Mu1Jiaqi Han2Long Li3The Key Laboratory of High Speed Circuit Design and EMC of Ministry of Education, School of Electronic Engineering, Xidian University, Xi'an 710071, ChinaThe Key Laboratory of High Speed Circuit Design and EMC of Ministry of Education, School of Electronic Engineering, Xidian University, Xi'an 710071, ChinaThe Key Laboratory of High Speed Circuit Design and EMC of Ministry of Education, School of Electronic Engineering, Xidian University, Xi'an 710071, ChinaCorresponding author.; The Key Laboratory of High Speed Circuit Design and EMC of Ministry of Education, School of Electronic Engineering, Xidian University, Xi'an 710071, ChinaA novel broadband metasurface (MTS) antenna array with high front-to-back ratio (FBR) is proposed for 28 GHz millimeter-wave applications. With slot pairs loaded on patch cells, an aperture-coupled slotted-mushroom MTS antenna is designed to obtain broadband radiation characteristics with a compact size. To suppress the backward radiation of this antenna, the printed ridge gap waveguide (PRGW) technology with a perfect magnetic conductor (PMC) shielding made of mushroom unit-cells underneath the microstrip feeding line is applied. On this basis, a 4 × 4 MTS antenna array with the PRGW feed network is developed. Simulated results show that the FBR can be highly improved by over 16 dB within the entire bandwidth. To validate the design, a prototype of the proposed antenna is fabricated. Measured results show that an FBR greater than 28 dB can be obtained over a 24% impedance bandwidth (from 24.9 GHz to 31.7 GHz) with the reflection coefficient less than −10 dB. The measured antenna gain ranges from 17 dBi to 19.2 dBi and the corresponding measured aperture efficiencies are 35% and 45.6%. The measured results also suggest that the proposed MTS antenna possesses −35 dB cross-polarization level and stable radiation patterns. In addition, the proposed antenna remains a very low profile of 1.7 mm (0.17λ0 at 28 GHz). All the achieved features indicate that the proposed MTS antenna is an important candidate for B5G and 6G wireless communication.http://www.sciencedirect.com/science/article/pii/S2949715922000026BroadbandMetasurface antennaFront-to-back ratio (FBR)Printed ridge gap waveguide technology (PRGW)Low profile
spellingShingle Hao Yi
Yajie Mu
Jiaqi Han
Long Li
Broadband millimeter-wave metasurface antenna array with printed ridge gap waveguide for high front-to-back ratio
Journal of Information and Intelligence
Broadband
Metasurface antenna
Front-to-back ratio (FBR)
Printed ridge gap waveguide technology (PRGW)
Low profile
title Broadband millimeter-wave metasurface antenna array with printed ridge gap waveguide for high front-to-back ratio
title_full Broadband millimeter-wave metasurface antenna array with printed ridge gap waveguide for high front-to-back ratio
title_fullStr Broadband millimeter-wave metasurface antenna array with printed ridge gap waveguide for high front-to-back ratio
title_full_unstemmed Broadband millimeter-wave metasurface antenna array with printed ridge gap waveguide for high front-to-back ratio
title_short Broadband millimeter-wave metasurface antenna array with printed ridge gap waveguide for high front-to-back ratio
title_sort broadband millimeter wave metasurface antenna array with printed ridge gap waveguide for high front to back ratio
topic Broadband
Metasurface antenna
Front-to-back ratio (FBR)
Printed ridge gap waveguide technology (PRGW)
Low profile
url http://www.sciencedirect.com/science/article/pii/S2949715922000026
work_keys_str_mv AT haoyi broadbandmillimeterwavemetasurfaceantennaarraywithprintedridgegapwaveguideforhighfronttobackratio
AT yajiemu broadbandmillimeterwavemetasurfaceantennaarraywithprintedridgegapwaveguideforhighfronttobackratio
AT jiaqihan broadbandmillimeterwavemetasurfaceantennaarraywithprintedridgegapwaveguideforhighfronttobackratio
AT longli broadbandmillimeterwavemetasurfaceantennaarraywithprintedridgegapwaveguideforhighfronttobackratio