Design and performance analysis of 28 GHz two-port MIMO rectangular microstrip patch antenna array for 5G applications

A rectangular microstrip patch antenna array with two ports, designed for operation in the mm-wave band at 28 GHz for 5G applications, has been developed to exhibit superior gain and efficiency. This paper introduces a 12-element array activated by a feed network utilizing a T-junction power combine...

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Main Authors: Ismam, Shafiul, Hossain, Delwar, Salam, Syed Munimus, Rashid, Muhammad Mahbubur
Format: Article
Language:English
Published: AlamBiblio Publishers 2023
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Online Access:http://irep.iium.edu.my/107457/1/107457_Design%20and%20performance%20analysis.pdf
http://irep.iium.edu.my/107457/
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spelling my.iium.irep.1074572023-10-13T07:13:42Z http://irep.iium.edu.my/107457/ Design and performance analysis of 28 GHz two-port MIMO rectangular microstrip patch antenna array for 5G applications Ismam, Shafiul Hossain, Delwar Salam, Syed Munimus Rashid, Muhammad Mahbubur TK5101 Telecommunication. Including telegraphy, radio, radar, television A rectangular microstrip patch antenna array with two ports, designed for operation in the mm-wave band at 28 GHz for 5G applications, has been developed to exhibit superior gain and efficiency. This paper introduces a 12-element array activated by a feed network utilizing a T-junction power combiner/divider. The array elements consist of rectangular patch antennas inserted throughout the structure. The designed array antenna exhibited a measured impedance bandwidth of 1.42 GHz. The simulated findings indicate that the antenna achieved a favorable impedance match, with isolation levels below -22 dB throughout the frequency range. The whole substrate board dimensions were 19.99 × 26.968 × 0.254 mm3. The array is positioned on the substrate material known as Rogers RT5880, resulting in a consistent and reliable radiation pattern. The CST MWS software is employed to model and simulate the microstrip patch array antenna. CST MWS is an electromagnetic simulator utilizing the Finite Integration in Technique (FIT) methodology to model and analyze full-wave electromagnetic phenomena accurately. The realized gain of 15 dBi has been reached for the combined array, whereas the individual arrays have a realized gain of 12.3 dBi. The calculated overall efficiency is roughly -0.5 decibels. The antenna array under consideration has demonstrated favorable multiple-input multiple-output (MIMO) capabilities, as evidenced by an envelope correlation coefficient (ECC) of less than 0.1. AlamBiblio Publishers 2023-09-30 Article PeerReviewed application/pdf en http://irep.iium.edu.my/107457/1/107457_Design%20and%20performance%20analysis.pdf Ismam, Shafiul and Hossain, Delwar and Salam, Syed Munimus and Rashid, Muhammad Mahbubur (2023) Design and performance analysis of 28 GHz two-port MIMO rectangular microstrip patch antenna array for 5G applications. Asian Journal of Electrical and Electronic Engineering, 3 (2). pp. 33-44. E-ISSN 2785-8189 https://alambiblio.com/ojs/index.php/ajoeee/article/view/51
institution Universiti Islam Antarabangsa Malaysia
building IIUM Library
collection Institutional Repository
continent Asia
country Malaysia
content_provider International Islamic University Malaysia
content_source IIUM Repository (IREP)
url_provider http://irep.iium.edu.my/
language English
topic TK5101 Telecommunication. Including telegraphy, radio, radar, television
spellingShingle TK5101 Telecommunication. Including telegraphy, radio, radar, television
Ismam, Shafiul
Hossain, Delwar
Salam, Syed Munimus
Rashid, Muhammad Mahbubur
Design and performance analysis of 28 GHz two-port MIMO rectangular microstrip patch antenna array for 5G applications
description A rectangular microstrip patch antenna array with two ports, designed for operation in the mm-wave band at 28 GHz for 5G applications, has been developed to exhibit superior gain and efficiency. This paper introduces a 12-element array activated by a feed network utilizing a T-junction power combiner/divider. The array elements consist of rectangular patch antennas inserted throughout the structure. The designed array antenna exhibited a measured impedance bandwidth of 1.42 GHz. The simulated findings indicate that the antenna achieved a favorable impedance match, with isolation levels below -22 dB throughout the frequency range. The whole substrate board dimensions were 19.99 × 26.968 × 0.254 mm3. The array is positioned on the substrate material known as Rogers RT5880, resulting in a consistent and reliable radiation pattern. The CST MWS software is employed to model and simulate the microstrip patch array antenna. CST MWS is an electromagnetic simulator utilizing the Finite Integration in Technique (FIT) methodology to model and analyze full-wave electromagnetic phenomena accurately. The realized gain of 15 dBi has been reached for the combined array, whereas the individual arrays have a realized gain of 12.3 dBi. The calculated overall efficiency is roughly -0.5 decibels. The antenna array under consideration has demonstrated favorable multiple-input multiple-output (MIMO) capabilities, as evidenced by an envelope correlation coefficient (ECC) of less than 0.1.
format Article
author Ismam, Shafiul
Hossain, Delwar
Salam, Syed Munimus
Rashid, Muhammad Mahbubur
author_facet Ismam, Shafiul
Hossain, Delwar
Salam, Syed Munimus
Rashid, Muhammad Mahbubur
author_sort Ismam, Shafiul
title Design and performance analysis of 28 GHz two-port MIMO rectangular microstrip patch antenna array for 5G applications
title_short Design and performance analysis of 28 GHz two-port MIMO rectangular microstrip patch antenna array for 5G applications
title_full Design and performance analysis of 28 GHz two-port MIMO rectangular microstrip patch antenna array for 5G applications
title_fullStr Design and performance analysis of 28 GHz two-port MIMO rectangular microstrip patch antenna array for 5G applications
title_full_unstemmed Design and performance analysis of 28 GHz two-port MIMO rectangular microstrip patch antenna array for 5G applications
title_sort design and performance analysis of 28 ghz two-port mimo rectangular microstrip patch antenna array for 5g applications
publisher AlamBiblio Publishers
publishDate 2023
url http://irep.iium.edu.my/107457/1/107457_Design%20and%20performance%20analysis.pdf
http://irep.iium.edu.my/107457/
https://alambiblio.com/ojs/index.php/ajoeee/article/view/51
_version_ 1781777379937484800
score 13.18916