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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Veröffentlicht in:ETRI journal 2019-12, Vol.41 (6), p.731-738
Hauptverfasser: Kim, Hongchan, Yeon, KyuBong, Kim, Wonjong, Park, Chul Soon
Format: Artikel
Sprache:kor
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Zusammenfassung: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.
ISSN:1225-6463
2233-7326