Design and Implementation of Dual-Band MIMO Antenna with Low Mutual Coupling Using EBG for Handheld Applications

A dual-band Multiple Input Multiple Output (MIMO) antenna system with enhanced isolation for LTE and WLAN applications is proposed. Using a double-rectangular Defected Ground Structure (DGS), the MIMO antenna gets two resonant frequencies of 2.6 GHz and 5.7 GHz with bandwidth of 5.7% and 4.3% respec...

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Main Authors: Duong Thanh Tu, Nguyen Van Hoc, Vu Van Yem, Pham Dinh Son
Format: Article
Language:English
Published: Taiwan Association of Engineering and Technology Innovation 2017-01-01
Series:International Journal of Engineering and Technology Innovation
Subjects:
Online Access:http://ojs.imeti.org/index.php/IJETI/article/view/167
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spelling doaj-244b64f079674ce9a39f29cab144ed392020-11-25T00:32:03ZengTaiwan Association of Engineering and Technology InnovationInternational Journal of Engineering and Technology Innovation2223-53292226-809X2017-01-0171247Design and Implementation of Dual-Band MIMO Antenna with Low Mutual Coupling Using EBG for Handheld ApplicationsDuong Thanh Tu0Nguyen Van Hoc1Vu Van Yem2Pham Dinh Son3Posts and Telecommunications Institute of technologyPosts and Telecommunications Institute of technologyHanoi University of Science and TechnologyPosts and Telecommunications Institute of technologyA dual-band Multiple Input Multiple Output (MIMO) antenna system with enhanced isolation for LTE and WLAN applications is proposed. Using a double-rectangular Defected Ground Structure (DGS), the MIMO antenna gets two resonant frequencies of 2.6 GHz and 5.7 GHz with bandwidth of 5.7% and 4.3% respectively. To reduce much more mutual coupling between dual-band MIMO antenna ports, a novel double-side Electromagnetic Band Gap (EBG) structure with equivalent circuit model is proposed. Size of t gain of the antenna is getting better, especially at the low band. he EBG unit cell is 8.6x8.6 mm2 that is built on FR4 substrate with height of 1.6 mm, so it is achieved more compact size than conventional EBG structures. With 1x7 EBG structures, the mutual coupling gets -40dB in the low frequency band and -30 dB in the high one with narrow distance of 0.11 from feeding point to feeding point. Furthermore, radiation efficiency as well as gain of the antenna is getting better, especially at the low band.http://ojs.imeti.org/index.php/IJETI/article/view/167MIMO antennaDouble-side EBGMutual coupling
collection DOAJ
language English
format Article
sources DOAJ
author Duong Thanh Tu
Nguyen Van Hoc
Vu Van Yem
Pham Dinh Son
spellingShingle Duong Thanh Tu
Nguyen Van Hoc
Vu Van Yem
Pham Dinh Son
Design and Implementation of Dual-Band MIMO Antenna with Low Mutual Coupling Using EBG for Handheld Applications
International Journal of Engineering and Technology Innovation
MIMO antenna
Double-side EBG
Mutual coupling
author_facet Duong Thanh Tu
Nguyen Van Hoc
Vu Van Yem
Pham Dinh Son
author_sort Duong Thanh Tu
title Design and Implementation of Dual-Band MIMO Antenna with Low Mutual Coupling Using EBG for Handheld Applications
title_short Design and Implementation of Dual-Band MIMO Antenna with Low Mutual Coupling Using EBG for Handheld Applications
title_full Design and Implementation of Dual-Band MIMO Antenna with Low Mutual Coupling Using EBG for Handheld Applications
title_fullStr Design and Implementation of Dual-Band MIMO Antenna with Low Mutual Coupling Using EBG for Handheld Applications
title_full_unstemmed Design and Implementation of Dual-Band MIMO Antenna with Low Mutual Coupling Using EBG for Handheld Applications
title_sort design and implementation of dual-band mimo antenna with low mutual coupling using ebg for handheld applications
publisher Taiwan Association of Engineering and Technology Innovation
series International Journal of Engineering and Technology Innovation
issn 2223-5329
2226-809X
publishDate 2017-01-01
description A dual-band Multiple Input Multiple Output (MIMO) antenna system with enhanced isolation for LTE and WLAN applications is proposed. Using a double-rectangular Defected Ground Structure (DGS), the MIMO antenna gets two resonant frequencies of 2.6 GHz and 5.7 GHz with bandwidth of 5.7% and 4.3% respectively. To reduce much more mutual coupling between dual-band MIMO antenna ports, a novel double-side Electromagnetic Band Gap (EBG) structure with equivalent circuit model is proposed. Size of t gain of the antenna is getting better, especially at the low band. he EBG unit cell is 8.6x8.6 mm2 that is built on FR4 substrate with height of 1.6 mm, so it is achieved more compact size than conventional EBG structures. With 1x7 EBG structures, the mutual coupling gets -40dB in the low frequency band and -30 dB in the high one with narrow distance of 0.11 from feeding point to feeding point. Furthermore, radiation efficiency as well as gain of the antenna is getting better, especially at the low band.
topic MIMO antenna
Double-side EBG
Mutual coupling
url http://ojs.imeti.org/index.php/IJETI/article/view/167
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AT vuvanyem designandimplementationofdualbandmimoantennawithlowmutualcouplingusingebgforhandheldapplications
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