Development of Rubber Substrate for More Robust Flexible Wearable Antenna at 2.4 GHz Application

In this work, a flexible microstrip patch antenna has been designed to be working at 2.4 GHz using rubber as the substrate material with permittivity of 3.0 and loss tangent of 0.02. The proposed antenna has been designed to achieve a good result of reflection coefficient, vswr, gain, directivity, a...

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Main Authors: Rahmad, Farisha Eriena, Mohamad, Sarah Yasmin, Abdul Malek, Norun Farihah, Abd Rahman, Faridah, Ruslan, Ahmad Alhadi, Zainal, Nurfarina
Format: Conference or Workshop Item
Language:English
English
Published: IEEE 2021
Subjects:
Online Access:http://irep.iium.edu.my/91097/1/91097_Development%20of%20Rubber%20Substrate.pdf
http://irep.iium.edu.my/91097/7/91097_Development%20of%20Rubber%20Substrate%20for%20More%20Robust%20Flexible%20Wearable%20Antenna%20at%202.4%20GHz%20Application_Scopus.pdf
http://irep.iium.edu.my/91097/
https://ieeexplore.ieee.org/abstract/document/9467163?casa_token=HdSIYmaOqhEAAAAA:NXCPtcHkhl9o_d-4swXRViMMVD0n-kU1qZNJIypagzWLkATETgZbSwtMD_fKvX0zaLsss6f604QJYtk
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spelling my.iium.irep.910972021-09-21T03:20:17Z http://irep.iium.edu.my/91097/ Development of Rubber Substrate for More Robust Flexible Wearable Antenna at 2.4 GHz Application Rahmad, Farisha Eriena Mohamad, Sarah Yasmin Abdul Malek, Norun Farihah Abd Rahman, Faridah Ruslan, Ahmad Alhadi Zainal, Nurfarina TK Electrical engineering. Electronics Nuclear engineering TK5101 Telecommunication. Including telegraphy, radio, radar, television In this work, a flexible microstrip patch antenna has been designed to be working at 2.4 GHz using rubber as the substrate material with permittivity of 3.0 and loss tangent of 0.02. The proposed antenna has been designed to achieve a good result of reflection coefficient, vswr, gain, directivity, and antenna efficiency at the selected operating frequency. The design of rectangular microstrip flexible antenna with two-element horizontal array has depicted a positive performance for wireless frequency band specifically at 2.4 GHz. The selected design has achieved a return loss of -49.659 dB, VSWR of 1.007, gain of 8.16 dBi, directivity of 9.21 dBi and 78.5% of total antenna efficiency. The proposed design is expected to be able to complement with the wearable innovation such as technology used on human body and is applicable for basic communication applications. IEEE 2021-07-01 Conference or Workshop Item PeerReviewed application/pdf en http://irep.iium.edu.my/91097/1/91097_Development%20of%20Rubber%20Substrate.pdf application/pdf en http://irep.iium.edu.my/91097/7/91097_Development%20of%20Rubber%20Substrate%20for%20More%20Robust%20Flexible%20Wearable%20Antenna%20at%202.4%20GHz%20Application_Scopus.pdf Rahmad, Farisha Eriena and Mohamad, Sarah Yasmin and Abdul Malek, Norun Farihah and Abd Rahman, Faridah and Ruslan, Ahmad Alhadi and Zainal, Nurfarina (2021) Development of Rubber Substrate for More Robust Flexible Wearable Antenna at 2.4 GHz Application. In: 2021 8th International Conference on Computer and Communication Engineering (ICCCE), 22-23 June 2021, Kuala Lumpur, Malaysia. https://ieeexplore.ieee.org/abstract/document/9467163?casa_token=HdSIYmaOqhEAAAAA:NXCPtcHkhl9o_d-4swXRViMMVD0n-kU1qZNJIypagzWLkATETgZbSwtMD_fKvX0zaLsss6f604QJYtk 10.1109/ICCCE50029.2021.9467163
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
English
topic TK Electrical engineering. Electronics Nuclear engineering
TK5101 Telecommunication. Including telegraphy, radio, radar, television
spellingShingle TK Electrical engineering. Electronics Nuclear engineering
TK5101 Telecommunication. Including telegraphy, radio, radar, television
Rahmad, Farisha Eriena
Mohamad, Sarah Yasmin
Abdul Malek, Norun Farihah
Abd Rahman, Faridah
Ruslan, Ahmad Alhadi
Zainal, Nurfarina
Development of Rubber Substrate for More Robust Flexible Wearable Antenna at 2.4 GHz Application
description In this work, a flexible microstrip patch antenna has been designed to be working at 2.4 GHz using rubber as the substrate material with permittivity of 3.0 and loss tangent of 0.02. The proposed antenna has been designed to achieve a good result of reflection coefficient, vswr, gain, directivity, and antenna efficiency at the selected operating frequency. The design of rectangular microstrip flexible antenna with two-element horizontal array has depicted a positive performance for wireless frequency band specifically at 2.4 GHz. The selected design has achieved a return loss of -49.659 dB, VSWR of 1.007, gain of 8.16 dBi, directivity of 9.21 dBi and 78.5% of total antenna efficiency. The proposed design is expected to be able to complement with the wearable innovation such as technology used on human body and is applicable for basic communication applications.
format Conference or Workshop Item
author Rahmad, Farisha Eriena
Mohamad, Sarah Yasmin
Abdul Malek, Norun Farihah
Abd Rahman, Faridah
Ruslan, Ahmad Alhadi
Zainal, Nurfarina
author_facet Rahmad, Farisha Eriena
Mohamad, Sarah Yasmin
Abdul Malek, Norun Farihah
Abd Rahman, Faridah
Ruslan, Ahmad Alhadi
Zainal, Nurfarina
author_sort Rahmad, Farisha Eriena
title Development of Rubber Substrate for More Robust Flexible Wearable Antenna at 2.4 GHz Application
title_short Development of Rubber Substrate for More Robust Flexible Wearable Antenna at 2.4 GHz Application
title_full Development of Rubber Substrate for More Robust Flexible Wearable Antenna at 2.4 GHz Application
title_fullStr Development of Rubber Substrate for More Robust Flexible Wearable Antenna at 2.4 GHz Application
title_full_unstemmed Development of Rubber Substrate for More Robust Flexible Wearable Antenna at 2.4 GHz Application
title_sort development of rubber substrate for more robust flexible wearable antenna at 2.4 ghz application
publisher IEEE
publishDate 2021
url http://irep.iium.edu.my/91097/1/91097_Development%20of%20Rubber%20Substrate.pdf
http://irep.iium.edu.my/91097/7/91097_Development%20of%20Rubber%20Substrate%20for%20More%20Robust%20Flexible%20Wearable%20Antenna%20at%202.4%20GHz%20Application_Scopus.pdf
http://irep.iium.edu.my/91097/
https://ieeexplore.ieee.org/abstract/document/9467163?casa_token=HdSIYmaOqhEAAAAA:NXCPtcHkhl9o_d-4swXRViMMVD0n-kU1qZNJIypagzWLkATETgZbSwtMD_fKvX0zaLsss6f604QJYtk
_version_ 1712284846060994560
score 13.18916