Improving the Performance of Patch Antenna by Applying Bandwidth Enhancement Techniques for 5G Applications

In this study, various Rectangular Microstrip Antenna (RMA) designs operating at 28 GHz frequency for 5G-communication system are performed. All designs are generated and analyzed using a 3D electromagnetic simulation program, ANSYS HFSS (High-Frequency Structure Simulator). Single and array type RM...

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Main Authors: Seda Ermiş, Murat Demirci
Format: Article
Language:English
Published: University North 2023-01-01
Series:Tehnički Glasnik
Subjects:
Online Access:https://hrcak.srce.hr/file/441840
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author Seda Ermiş
Murat Demirci
author_facet Seda Ermiş
Murat Demirci
author_sort Seda Ermiş
collection DOAJ
description In this study, various Rectangular Microstrip Antenna (RMA) designs operating at 28 GHz frequency for 5G-communication system are performed. All designs are generated and analyzed using a 3D electromagnetic simulation program, ANSYS HFSS (High-Frequency Structure Simulator). Single and array type RMA designs are constructed by using non-contact inset-fed feeding technique. Subsequently, the bandwidth of RMAs is increased by slotting on the ground surface, and adding a parasitic element to the antenna structure. Because of these analyses, for single type RMA, the bandwidth increases from 2.09 GHz to 3.45 GHz. Moreover, for 1 × 2 and 1 × 4 array type RMAs, very wide bandwidths of 7.53 GHz and 4.53 GHz, respectively, are obtained by applying bandwidth enhancement techniques. The success of the study has been demonstrated by comparing outputs of the designs with the some similar, experimental or simulation studies published in the literature.
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spelling doaj.art-40b77aaced9a49b7ba7ad181d03ad9782024-04-15T18:45:55ZengUniversity NorthTehnički Glasnik1846-61681848-55882023-01-0117330531210.31803/tg-20220819001236Improving the Performance of Patch Antenna by Applying Bandwidth Enhancement Techniques for 5G ApplicationsSeda Ermiş0Murat Demirci1Osmaniye Korkut Ata University, Engineering Faculty, Electrical and Electronics Engineering Department, 80000, Merkez, Osmaniye, TurkeyOsmaniye Korkut Ata University, Engineering Faculty, Electrical and Electronics Engineering Department, 80000, Merkez, Osmaniye, TurkeyIn this study, various Rectangular Microstrip Antenna (RMA) designs operating at 28 GHz frequency for 5G-communication system are performed. All designs are generated and analyzed using a 3D electromagnetic simulation program, ANSYS HFSS (High-Frequency Structure Simulator). Single and array type RMA designs are constructed by using non-contact inset-fed feeding technique. Subsequently, the bandwidth of RMAs is increased by slotting on the ground surface, and adding a parasitic element to the antenna structure. Because of these analyses, for single type RMA, the bandwidth increases from 2.09 GHz to 3.45 GHz. Moreover, for 1 × 2 and 1 × 4 array type RMAs, very wide bandwidths of 7.53 GHz and 4.53 GHz, respectively, are obtained by applying bandwidth enhancement techniques. The success of the study has been demonstrated by comparing outputs of the designs with the some similar, experimental or simulation studies published in the literature.https://hrcak.srce.hr/file/441840DGSRectangular Patch Antenna5G28 GHz
spellingShingle Seda Ermiş
Murat Demirci
Improving the Performance of Patch Antenna by Applying Bandwidth Enhancement Techniques for 5G Applications
Tehnički Glasnik
DGS
Rectangular Patch Antenna
5G
28 GHz
title Improving the Performance of Patch Antenna by Applying Bandwidth Enhancement Techniques for 5G Applications
title_full Improving the Performance of Patch Antenna by Applying Bandwidth Enhancement Techniques for 5G Applications
title_fullStr Improving the Performance of Patch Antenna by Applying Bandwidth Enhancement Techniques for 5G Applications
title_full_unstemmed Improving the Performance of Patch Antenna by Applying Bandwidth Enhancement Techniques for 5G Applications
title_short Improving the Performance of Patch Antenna by Applying Bandwidth Enhancement Techniques for 5G Applications
title_sort improving the performance of patch antenna by applying bandwidth enhancement techniques for 5g applications
topic DGS
Rectangular Patch Antenna
5G
28 GHz
url https://hrcak.srce.hr/file/441840
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