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A Self-Decoupling Technique to Realize Dense Packing of Antenna Elements in MIMO Arrays for Wideband Sub-6 GHz Communication Systems

A self-decoupled technique is described that enables the radiating elements in the antenna array to be densely packed for multiple-input multiple-output (MIMO) wireless communications systems. High isolation between the adjacent antenna elements is obtained by fixing the radiating elements in an ort...

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Autores principales: Khan, Shahid, Marwat, Safdar Nawaz Khan, Khan, Muhammad Amir, Ahmed, Salman, Gohar, Neelam, Alim, Mohammad Ehsanul, Algarni, Abeer D., Elmannai, Hela
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9862120/
https://www.ncbi.nlm.nih.gov/pubmed/36679452
http://dx.doi.org/10.3390/s23020654
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author Khan, Shahid
Marwat, Safdar Nawaz Khan
Khan, Muhammad Amir
Ahmed, Salman
Gohar, Neelam
Alim, Mohammad Ehsanul
Algarni, Abeer D.
Elmannai, Hela
author_facet Khan, Shahid
Marwat, Safdar Nawaz Khan
Khan, Muhammad Amir
Ahmed, Salman
Gohar, Neelam
Alim, Mohammad Ehsanul
Algarni, Abeer D.
Elmannai, Hela
author_sort Khan, Shahid
collection PubMed
description A self-decoupled technique is described that enables the radiating elements in the antenna array to be densely packed for multiple-input multiple-output (MIMO) wireless communications systems. High isolation between the adjacent antenna elements is obtained by fixing the radiating elements in an orthogonal configuration with respects to each other. Current from the adjacent ports cancels their impact which results in low mutual coupling. The additional benefit of this configuration is realizing a densely packed array. The ground plane of each radiating element on the array board itself are isolated to mitigate surface wave propagations to suppress mutual coupling between the antenna elements. The radiating elements are based on a modified edge-fed circular patch antenna that includes a curved slot line and open-circuited stub to widen the array’s impedance bandwidth with no impact on the antenna’s footprint size. The proposed technique was verified with the design of an antenna array of matrix size 4 × 4 centered at 3.5 GHz. The array had a measured impedance bandwidth of 4 GHz from 1.5 GHz to 5.5 GHz, which corresponds to a fractional bandwidth of 114%, peak gain of 3 dBi and radiation efficiency of 84%. Its average diversity gain and envelope correlation coefficient (ECC) over its operating band are 9.6 dB and <0.016, respectively. The minimum isolation achieved between the radiating elements is better than 15 dB. The dimensions of the array are 0.4 × 0.4 × 0.039λ_g^3. The proposed array has characteristics suitable for sub-6 GHz wireless communication systems
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spelling pubmed-98621202023-01-22 A Self-Decoupling Technique to Realize Dense Packing of Antenna Elements in MIMO Arrays for Wideband Sub-6 GHz Communication Systems Khan, Shahid Marwat, Safdar Nawaz Khan Khan, Muhammad Amir Ahmed, Salman Gohar, Neelam Alim, Mohammad Ehsanul Algarni, Abeer D. Elmannai, Hela Sensors (Basel) Article A self-decoupled technique is described that enables the radiating elements in the antenna array to be densely packed for multiple-input multiple-output (MIMO) wireless communications systems. High isolation between the adjacent antenna elements is obtained by fixing the radiating elements in an orthogonal configuration with respects to each other. Current from the adjacent ports cancels their impact which results in low mutual coupling. The additional benefit of this configuration is realizing a densely packed array. The ground plane of each radiating element on the array board itself are isolated to mitigate surface wave propagations to suppress mutual coupling between the antenna elements. The radiating elements are based on a modified edge-fed circular patch antenna that includes a curved slot line and open-circuited stub to widen the array’s impedance bandwidth with no impact on the antenna’s footprint size. The proposed technique was verified with the design of an antenna array of matrix size 4 × 4 centered at 3.5 GHz. The array had a measured impedance bandwidth of 4 GHz from 1.5 GHz to 5.5 GHz, which corresponds to a fractional bandwidth of 114%, peak gain of 3 dBi and radiation efficiency of 84%. Its average diversity gain and envelope correlation coefficient (ECC) over its operating band are 9.6 dB and <0.016, respectively. The minimum isolation achieved between the radiating elements is better than 15 dB. The dimensions of the array are 0.4 × 0.4 × 0.039λ_g^3. The proposed array has characteristics suitable for sub-6 GHz wireless communication systems MDPI 2023-01-06 /pmc/articles/PMC9862120/ /pubmed/36679452 http://dx.doi.org/10.3390/s23020654 Text en © 2023 by the authors. https://creativecommons.org/licenses/by/4.0/Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Khan, Shahid
Marwat, Safdar Nawaz Khan
Khan, Muhammad Amir
Ahmed, Salman
Gohar, Neelam
Alim, Mohammad Ehsanul
Algarni, Abeer D.
Elmannai, Hela
A Self-Decoupling Technique to Realize Dense Packing of Antenna Elements in MIMO Arrays for Wideband Sub-6 GHz Communication Systems
title A Self-Decoupling Technique to Realize Dense Packing of Antenna Elements in MIMO Arrays for Wideband Sub-6 GHz Communication Systems
title_full A Self-Decoupling Technique to Realize Dense Packing of Antenna Elements in MIMO Arrays for Wideband Sub-6 GHz Communication Systems
title_fullStr A Self-Decoupling Technique to Realize Dense Packing of Antenna Elements in MIMO Arrays for Wideband Sub-6 GHz Communication Systems
title_full_unstemmed A Self-Decoupling Technique to Realize Dense Packing of Antenna Elements in MIMO Arrays for Wideband Sub-6 GHz Communication Systems
title_short A Self-Decoupling Technique to Realize Dense Packing of Antenna Elements in MIMO Arrays for Wideband Sub-6 GHz Communication Systems
title_sort self-decoupling technique to realize dense packing of antenna elements in mimo arrays for wideband sub-6 ghz communication systems
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9862120/
https://www.ncbi.nlm.nih.gov/pubmed/36679452
http://dx.doi.org/10.3390/s23020654
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