Design MIMO Antenna With Decoupling Structure For Mutual Coupling Improvement

This research project presents a design of dual element Multiple Input Multiple Output (MIMO) using simple rectangular patch integrated with decoupling ground structure (DGS) for mutual coupling reduction and improve antenna isolation. The decoupling structure on the ground has been introduce betwee...

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Published in:IEEE Symposium on Wireless Technology and Applications, ISWTA
Main Author: Syed Mustaffa S.A.W.; Yon H.; Jumaat H.
Format: Conference paper
Language:English
Published: IEEE Computer Society 2024
Online Access:https://www.scopus.com/inward/record.uri?eid=2-s2.0-85203805265&doi=10.1109%2fISWTA62130.2024.10651664&partnerID=40&md5=863ef7e5b0ba5fe4abc90808ef320123
id 2-s2.0-85203805265
spelling 2-s2.0-85203805265
Syed Mustaffa S.A.W.; Yon H.; Jumaat H.
Design MIMO Antenna With Decoupling Structure For Mutual Coupling Improvement
2024
IEEE Symposium on Wireless Technology and Applications, ISWTA


10.1109/ISWTA62130.2024.10651664
https://www.scopus.com/inward/record.uri?eid=2-s2.0-85203805265&doi=10.1109%2fISWTA62130.2024.10651664&partnerID=40&md5=863ef7e5b0ba5fe4abc90808ef320123
This research project presents a design of dual element Multiple Input Multiple Output (MIMO) using simple rectangular patch integrated with decoupling ground structure (DGS) for mutual coupling reduction and improve antenna isolation. The decoupling structure on the ground has been introduce between antennas to improve isolation. Four different DGS structures with varying dimensions have been developed, to test the mutual coupling between dual element antennas. The DGS with “structure B” have been chose for final antenna design due to its good in isolation. By using the structure B, the antenna isolation has reduced from -16.69dB to -24.72dB. The result shows 32.48% isolation improvement for the antenna with structure B. The antenna was simulated and optimized at 2.5 GHz with permittivity εr = 4.3 and thickness h = 1.6mm on a FR-4 lossy substrate using Computer Simulation Technology (CST). The antennas are matched at their respective operating frequencies. The modelling and manufacturing results demonstrated that the antenna functions well. © 2024 IEEE.
IEEE Computer Society
23247843
English
Conference paper

author Syed Mustaffa S.A.W.; Yon H.; Jumaat H.
spellingShingle Syed Mustaffa S.A.W.; Yon H.; Jumaat H.
Design MIMO Antenna With Decoupling Structure For Mutual Coupling Improvement
author_facet Syed Mustaffa S.A.W.; Yon H.; Jumaat H.
author_sort Syed Mustaffa S.A.W.; Yon H.; Jumaat H.
title Design MIMO Antenna With Decoupling Structure For Mutual Coupling Improvement
title_short Design MIMO Antenna With Decoupling Structure For Mutual Coupling Improvement
title_full Design MIMO Antenna With Decoupling Structure For Mutual Coupling Improvement
title_fullStr Design MIMO Antenna With Decoupling Structure For Mutual Coupling Improvement
title_full_unstemmed Design MIMO Antenna With Decoupling Structure For Mutual Coupling Improvement
title_sort Design MIMO Antenna With Decoupling Structure For Mutual Coupling Improvement
publishDate 2024
container_title IEEE Symposium on Wireless Technology and Applications, ISWTA
container_volume
container_issue
doi_str_mv 10.1109/ISWTA62130.2024.10651664
url https://www.scopus.com/inward/record.uri?eid=2-s2.0-85203805265&doi=10.1109%2fISWTA62130.2024.10651664&partnerID=40&md5=863ef7e5b0ba5fe4abc90808ef320123
description This research project presents a design of dual element Multiple Input Multiple Output (MIMO) using simple rectangular patch integrated with decoupling ground structure (DGS) for mutual coupling reduction and improve antenna isolation. The decoupling structure on the ground has been introduce between antennas to improve isolation. Four different DGS structures with varying dimensions have been developed, to test the mutual coupling between dual element antennas. The DGS with “structure B” have been chose for final antenna design due to its good in isolation. By using the structure B, the antenna isolation has reduced from -16.69dB to -24.72dB. The result shows 32.48% isolation improvement for the antenna with structure B. The antenna was simulated and optimized at 2.5 GHz with permittivity εr = 4.3 and thickness h = 1.6mm on a FR-4 lossy substrate using Computer Simulation Technology (CST). The antennas are matched at their respective operating frequencies. The modelling and manufacturing results demonstrated that the antenna functions well. © 2024 IEEE.
publisher IEEE Computer Society
issn 23247843
language English
format Conference paper
accesstype
record_format scopus
collection Scopus
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