Multi-band antenna array based on double negative metamaterial for multi automotive applications

This paper presents a design of multi-band array antenna based on Double Negative Metamaterial (DNM) unit cells for multi-automotive applications. The antenna consists of 4 × 4 rectangular and circular radiating patches connected in series using microstrip lines and fed by a 50 Ω corporate microstri...

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Main Authors: Alqadami, Abdulrahman Shueai Mohsen, Mohd Faizal, Jamlos, Imtiaz, Islam, Soh, Ping Jack, R., Mamat, Khairi, Khairil A., Narbudowicz, Adam Z
Format: Article
Language:English
Published: Dublin Institute of Technology 2017
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Online Access:http://umpir.ump.edu.my/id/eprint/20644/1/Multi-Band%20Antenna%20Array%20Based%20on%20Double%20Negative%20Metamaterial%20for%20Multi%20Automotive%20Applications.pdf
http://umpir.ump.edu.my/id/eprint/20644/
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spelling my.ump.umpir.206442018-08-03T08:36:21Z http://umpir.ump.edu.my/id/eprint/20644/ Multi-band antenna array based on double negative metamaterial for multi automotive applications Alqadami, Abdulrahman Shueai Mohsen Mohd Faizal, Jamlos Imtiaz, Islam Soh, Ping Jack R., Mamat Khairi, Khairil A. Narbudowicz, Adam Z TJ Mechanical engineering and machinery This paper presents a design of multi-band array antenna based on Double Negative Metamaterial (DNM) unit cells for multi-automotive applications. The antenna consists of 4 × 4 rectangular and circular radiating patches connected in series using microstrip lines and fed by a 50 Ω corporate microstrip line. An array of 4×6 wire loaded complementary spiral resonator (CSR) unit cells is placed on its reverse side to provide miniaturization and multiband features to the proposed design. The reflection coefficient (S11), mutual coupling, effective diversity gain (EDG), envelope correlation coefficient (ECC), and radiation patterns are evaluated for four elements of the proposed antenna placed in four different locations on the car body model. Simulations and measurements indicated that the proposed antenna features a low mutual coupling (< −34 dB), low ECC (< 0.01), high EDG (> 9.995), high efficiency (72%–95%), and low on-car detuning over the desired five bands; 1.99 GHz to 3.03 GHz, 5.15 GHz to 6.369 GHz, 7.67 GHz to 7.99 GHz, 9.91 GHz to 10.23 GHz, and 11.79 GHz to 12.2 GHz. The performance of ECC between four antennas on car body has been investigated in different cases of isotropic, indoor, and outdoor. The metallic effect on antennas performance also has been investigated by evaluating the mutual coupling and transmission coefficient between two antennas served as transmitter and receiver with presence of car body. The results show transmission coefficient of proposed DNM antenna with metallic presence almost identical to free space across desired frequency bands. With all capabilities mentioned the antenna has potential for WiFi/WiMAX, Vehicleto-Vehicle (V2V), transportable earth exploration satellite, military requirement for land vehicles, and earth stations on vessels applications. Dublin Institute of Technology 2017 Article PeerReviewed pdf en cc_by http://umpir.ump.edu.my/id/eprint/20644/1/Multi-Band%20Antenna%20Array%20Based%20on%20Double%20Negative%20Metamaterial%20for%20Multi%20Automotive%20Applications.pdf Alqadami, Abdulrahman Shueai Mohsen and Mohd Faizal, Jamlos and Imtiaz, Islam and Soh, Ping Jack and R., Mamat and Khairi, Khairil A. and Narbudowicz, Adam Z (2017) Multi-band antenna array based on double negative metamaterial for multi automotive applications. Progress In Electromagnetics Research (PIER), 159. pp. 27-37. ISSN 1070-4698 (print); 1559-8985 (online) https://arrow.dit.ie/cgi/viewcontent.cgi?article=1129&context=ahfrcart 10.2528/PIER16091203
institution Universiti Malaysia Pahang
building UMP Library
collection Institutional Repository
continent Asia
country Malaysia
content_provider Universiti Malaysia Pahang
content_source UMP Institutional Repository
url_provider http://umpir.ump.edu.my/
language English
topic TJ Mechanical engineering and machinery
spellingShingle TJ Mechanical engineering and machinery
Alqadami, Abdulrahman Shueai Mohsen
Mohd Faizal, Jamlos
Imtiaz, Islam
Soh, Ping Jack
R., Mamat
Khairi, Khairil A.
Narbudowicz, Adam Z
Multi-band antenna array based on double negative metamaterial for multi automotive applications
description This paper presents a design of multi-band array antenna based on Double Negative Metamaterial (DNM) unit cells for multi-automotive applications. The antenna consists of 4 × 4 rectangular and circular radiating patches connected in series using microstrip lines and fed by a 50 Ω corporate microstrip line. An array of 4×6 wire loaded complementary spiral resonator (CSR) unit cells is placed on its reverse side to provide miniaturization and multiband features to the proposed design. The reflection coefficient (S11), mutual coupling, effective diversity gain (EDG), envelope correlation coefficient (ECC), and radiation patterns are evaluated for four elements of the proposed antenna placed in four different locations on the car body model. Simulations and measurements indicated that the proposed antenna features a low mutual coupling (< −34 dB), low ECC (< 0.01), high EDG (> 9.995), high efficiency (72%–95%), and low on-car detuning over the desired five bands; 1.99 GHz to 3.03 GHz, 5.15 GHz to 6.369 GHz, 7.67 GHz to 7.99 GHz, 9.91 GHz to 10.23 GHz, and 11.79 GHz to 12.2 GHz. The performance of ECC between four antennas on car body has been investigated in different cases of isotropic, indoor, and outdoor. The metallic effect on antennas performance also has been investigated by evaluating the mutual coupling and transmission coefficient between two antennas served as transmitter and receiver with presence of car body. The results show transmission coefficient of proposed DNM antenna with metallic presence almost identical to free space across desired frequency bands. With all capabilities mentioned the antenna has potential for WiFi/WiMAX, Vehicleto-Vehicle (V2V), transportable earth exploration satellite, military requirement for land vehicles, and earth stations on vessels applications.
format Article
author Alqadami, Abdulrahman Shueai Mohsen
Mohd Faizal, Jamlos
Imtiaz, Islam
Soh, Ping Jack
R., Mamat
Khairi, Khairil A.
Narbudowicz, Adam Z
author_facet Alqadami, Abdulrahman Shueai Mohsen
Mohd Faizal, Jamlos
Imtiaz, Islam
Soh, Ping Jack
R., Mamat
Khairi, Khairil A.
Narbudowicz, Adam Z
author_sort Alqadami, Abdulrahman Shueai Mohsen
title Multi-band antenna array based on double negative metamaterial for multi automotive applications
title_short Multi-band antenna array based on double negative metamaterial for multi automotive applications
title_full Multi-band antenna array based on double negative metamaterial for multi automotive applications
title_fullStr Multi-band antenna array based on double negative metamaterial for multi automotive applications
title_full_unstemmed Multi-band antenna array based on double negative metamaterial for multi automotive applications
title_sort multi-band antenna array based on double negative metamaterial for multi automotive applications
publisher Dublin Institute of Technology
publishDate 2017
url http://umpir.ump.edu.my/id/eprint/20644/1/Multi-Band%20Antenna%20Array%20Based%20on%20Double%20Negative%20Metamaterial%20for%20Multi%20Automotive%20Applications.pdf
http://umpir.ump.edu.my/id/eprint/20644/
https://arrow.dit.ie/cgi/viewcontent.cgi?article=1129&context=ahfrcart
_version_ 1643668929768325120
score 13.211869