Design and implementation of electromagnetic band‐gap embedded antenna for vehicle‐to‐everything communications in vehicular systems

We proposed a novel electromagnetic band‐gap (EBG) cell‐embedded antenna structure for reducing the interference that radiates at the antenna edge in wireless access in vehicular environment (WAVE) communication systems for vehicle‐to‐everything communications. To suppress the radiation of surface w...

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Main Authors: Hongchan Kim, KyuBong Yeon, Wonjong Kim, Chul Soon Park
Format: Article
Language:English
Published: Electronics and Telecommunications Research Institute (ETRI) 2019-08-01
Series:ETRI Journal
Subjects:
Online Access:https://doi.org/10.4218/etrij.2017-0197
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author Hongchan Kim
KyuBong Yeon
Wonjong Kim
Chul Soon Park
author_facet Hongchan Kim
KyuBong Yeon
Wonjong Kim
Chul Soon Park
author_sort Hongchan Kim
collection DOAJ
description We proposed a novel electromagnetic band‐gap (EBG) cell‐embedded antenna structure for reducing the interference that radiates at the antenna edge in wireless access in vehicular environment (WAVE) communication systems for vehicle‐to‐everything communications. To suppress the radiation of surface waves from the ground plane and vehicle, EBG cells were inserted between micropatch arrays. A simulation was also performed to determine the optimum EBG cell structure located above the ground plane in a conformal linear microstrip patch array antenna. The characteristics such as return loss, peak gain, and radiation patterns obtained using the fabricated EBG cell‐embedded antenna were superior to those obtained without the EBG cells. A return loss of 35.14 dB, peak gain of 10.15 dBi at 80°, and improvement of 2.037 dB max at the field of view in the radiation beam patterns were obtained using the proposed WAVE antenna.
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spelling doaj.art-31d6c06e11df48e5ae229f115d2e97c12022-12-21T20:15:34ZengElectronics and Telecommunications Research Institute (ETRI)ETRI Journal1225-64632019-08-0141673173810.4218/etrij.2017-019710.4218/etrij.2017-0197Design and implementation of electromagnetic band‐gap embedded antenna for vehicle‐to‐everything communications in vehicular systemsHongchan KimKyuBong YeonWonjong KimChul Soon ParkWe proposed a novel electromagnetic band‐gap (EBG) cell‐embedded antenna structure for reducing the interference that radiates at the antenna edge in wireless access in vehicular environment (WAVE) communication systems for vehicle‐to‐everything communications. To suppress the radiation of surface waves from the ground plane and vehicle, EBG cells were inserted between micropatch arrays. A simulation was also performed to determine the optimum EBG cell structure located above the ground plane in a conformal linear microstrip patch array antenna. The characteristics such as return loss, peak gain, and radiation patterns obtained using the fabricated EBG cell‐embedded antenna were superior to those obtained without the EBG cells. A return loss of 35.14 dB, peak gain of 10.15 dBi at 80°, and improvement of 2.037 dB max at the field of view in the radiation beam patterns were obtained using the proposed WAVE antenna.https://doi.org/10.4218/etrij.2017-0197automotive communication antennaelectromagnetic band‐gaplinear array antennamicro‐strip patchwave
spellingShingle Hongchan Kim
KyuBong Yeon
Wonjong Kim
Chul Soon Park
Design and implementation of electromagnetic band‐gap embedded antenna for vehicle‐to‐everything communications in vehicular systems
ETRI Journal
automotive communication antenna
electromagnetic band‐gap
linear array antenna
micro‐strip patch
wave
title Design and implementation of electromagnetic band‐gap embedded antenna for vehicle‐to‐everything communications in vehicular systems
title_full Design and implementation of electromagnetic band‐gap embedded antenna for vehicle‐to‐everything communications in vehicular systems
title_fullStr Design and implementation of electromagnetic band‐gap embedded antenna for vehicle‐to‐everything communications in vehicular systems
title_full_unstemmed Design and implementation of electromagnetic band‐gap embedded antenna for vehicle‐to‐everything communications in vehicular systems
title_short Design and implementation of electromagnetic band‐gap embedded antenna for vehicle‐to‐everything communications in vehicular systems
title_sort design and implementation of electromagnetic band gap embedded antenna for vehicle to everything communications in vehicular systems
topic automotive communication antenna
electromagnetic band‐gap
linear array antenna
micro‐strip patch
wave
url https://doi.org/10.4218/etrij.2017-0197
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AT kyubongyeon designandimplementationofelectromagneticbandgapembeddedantennaforvehicletoeverythingcommunicationsinvehicularsystems
AT wonjongkim designandimplementationofelectromagneticbandgapembeddedantennaforvehicletoeverythingcommunicationsinvehicularsystems
AT chulsoonpark designandimplementationofelectromagneticbandgapembeddedantennaforvehicletoeverythingcommunicationsinvehicularsystems