Wideband band-notched antenna using electromagnetic band-gap structure with dual 5G bands

A wideband band-notched antenna using electromagnetic band-gap (EBG) structure with dual 5G bands is proposed and demonstrated. The single element antenna consists of a spade-shape radiating element, partial ground plane and two EBG structure fed by a microstrip line. The two EBG structures have an...

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Main Author: Abdullah, Nasidi Ibrahim
Format: Thesis
Language:English
Published: 2015
Subjects:
Online Access:http://eprints.utm.my/id/eprint/78822/1/NasidiIbrahimAbdullahiMFKE2015.pdf
http://eprints.utm.my/id/eprint/78822/
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spelling my.utm.788222018-09-17T04:20:51Z http://eprints.utm.my/id/eprint/78822/ Wideband band-notched antenna using electromagnetic band-gap structure with dual 5G bands Abdullah, Nasidi Ibrahim TK Electrical engineering. Electronics Nuclear engineering A wideband band-notched antenna using electromagnetic band-gap (EBG) structure with dual 5G bands is proposed and demonstrated. The single element antenna consists of a spade-shape radiating element, partial ground plane and two EBG structure fed by a microstrip line. The two EBG structures have an edge-located via. The wideband is realized by the combine resonance of the radiator and partial ground plane. The band notch was realized using two similar mush-rooms like EBG structures integrated into the feedline of the wideband antenna. The antenna has operating frequency of 6-12GHz with a band-notch between 8.2-10.7GHz. The EBG provide the band notch by degrading the antenna matching and changing current distribution. Moreover, the performance of the antenna has been studied and it has been found that the radiation patterns of the antenna without EBG and that with EBG are exactly the same. This indicates that the EBG has no effect on the radiation characteristics of the antenna. The simulations were done on using CST microwave studio. The fabrication of the antennas was carried out on FR4 substrate with dielectric constant Er of 4.6 and thickness 1.6mm. The measured and simulated results are compared and analysed. With two 5G bands, the antenna can be considered for future (5G) wireless mobile communication applications. 2015-12 Thesis NonPeerReviewed application/pdf en http://eprints.utm.my/id/eprint/78822/1/NasidiIbrahimAbdullahiMFKE2015.pdf Abdullah, Nasidi Ibrahim (2015) Wideband band-notched antenna using electromagnetic band-gap structure with dual 5G bands. Masters thesis, Universiti Teknologi Malaysia, Faculty of Electrical Engineering. http://dms.library.utm.my:8080/vital/access/manager/Repository/vital:105897
institution Universiti Teknologi Malaysia
building UTM Library
collection Institutional Repository
continent Asia
country Malaysia
content_provider Universiti Teknologi Malaysia
content_source UTM Institutional Repository
url_provider http://eprints.utm.my/
language English
topic TK Electrical engineering. Electronics Nuclear engineering
spellingShingle TK Electrical engineering. Electronics Nuclear engineering
Abdullah, Nasidi Ibrahim
Wideband band-notched antenna using electromagnetic band-gap structure with dual 5G bands
description A wideband band-notched antenna using electromagnetic band-gap (EBG) structure with dual 5G bands is proposed and demonstrated. The single element antenna consists of a spade-shape radiating element, partial ground plane and two EBG structure fed by a microstrip line. The two EBG structures have an edge-located via. The wideband is realized by the combine resonance of the radiator and partial ground plane. The band notch was realized using two similar mush-rooms like EBG structures integrated into the feedline of the wideband antenna. The antenna has operating frequency of 6-12GHz with a band-notch between 8.2-10.7GHz. The EBG provide the band notch by degrading the antenna matching and changing current distribution. Moreover, the performance of the antenna has been studied and it has been found that the radiation patterns of the antenna without EBG and that with EBG are exactly the same. This indicates that the EBG has no effect on the radiation characteristics of the antenna. The simulations were done on using CST microwave studio. The fabrication of the antennas was carried out on FR4 substrate with dielectric constant Er of 4.6 and thickness 1.6mm. The measured and simulated results are compared and analysed. With two 5G bands, the antenna can be considered for future (5G) wireless mobile communication applications.
format Thesis
author Abdullah, Nasidi Ibrahim
author_facet Abdullah, Nasidi Ibrahim
author_sort Abdullah, Nasidi Ibrahim
title Wideband band-notched antenna using electromagnetic band-gap structure with dual 5G bands
title_short Wideband band-notched antenna using electromagnetic band-gap structure with dual 5G bands
title_full Wideband band-notched antenna using electromagnetic band-gap structure with dual 5G bands
title_fullStr Wideband band-notched antenna using electromagnetic band-gap structure with dual 5G bands
title_full_unstemmed Wideband band-notched antenna using electromagnetic band-gap structure with dual 5G bands
title_sort wideband band-notched antenna using electromagnetic band-gap structure with dual 5g bands
publishDate 2015
url http://eprints.utm.my/id/eprint/78822/1/NasidiIbrahimAbdullahiMFKE2015.pdf
http://eprints.utm.my/id/eprint/78822/
http://dms.library.utm.my:8080/vital/access/manager/Repository/vital:105897
_version_ 1643658014988697600
score 13.15806