Octagon fractal microstrip Yagi antenna with a combined DNG and DPS layer structure

A high gain octagon fractal microstrip Yagi antenna (OFMYA) at 5.8 GHz industrial, scientific and medical band is presented in this letter. The OFMYA utilizes Cross Snow fractal concept as its director elements. A double-negative (DNG) and double-positive (DPS) layers are placed above the OFMYA in o...

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Main Authors: Muhammad Chatib Quzwain, Kamelia, Ismail, Alyani, Sali, Aduwati
Format: Article
Language:English
Published: John Wiley and Sons 2017
Online Access:http://psasir.upm.edu.my/id/eprint/62564/1/YAGI.pdf
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author Muhammad Chatib Quzwain, Kamelia
Ismail, Alyani
Sali, Aduwati
author_facet Muhammad Chatib Quzwain, Kamelia
Ismail, Alyani
Sali, Aduwati
author_sort Muhammad Chatib Quzwain, Kamelia
collection UPM
description A high gain octagon fractal microstrip Yagi antenna (OFMYA) at 5.8 GHz industrial, scientific and medical band is presented in this letter. The OFMYA utilizes Cross Snow fractal concept as its director elements. A double-negative (DNG) and double-positive (DPS) layers are placed above the OFMYA in order to attain more gain. A prototype of the OFMYA has been etched on Arlon CuClad 217 which has dielectric permittivity of 2.2 and thickness of 0.787 mm. Meanwhile, DNG and DPS are made of Arlon AD1000 having dielectric permittivity of 10.2 and thickness of 0.787. The proposed antenna was simulated and measured. Experimental result shows that the OFMYA with a combined DNG and DPS layer yields a gain of 15.9 dB. It indicates that the proposed antenna in this article is capable to provide a higher gain with a smaller surface size compared to other microstrip Yagi antennas.
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spelling upm.eprints-625642020-12-03T20:25:03Z http://psasir.upm.edu.my/id/eprint/62564/ Octagon fractal microstrip Yagi antenna with a combined DNG and DPS layer structure Muhammad Chatib Quzwain, Kamelia Ismail, Alyani Sali, Aduwati A high gain octagon fractal microstrip Yagi antenna (OFMYA) at 5.8 GHz industrial, scientific and medical band is presented in this letter. The OFMYA utilizes Cross Snow fractal concept as its director elements. A double-negative (DNG) and double-positive (DPS) layers are placed above the OFMYA in order to attain more gain. A prototype of the OFMYA has been etched on Arlon CuClad 217 which has dielectric permittivity of 2.2 and thickness of 0.787 mm. Meanwhile, DNG and DPS are made of Arlon AD1000 having dielectric permittivity of 10.2 and thickness of 0.787. The proposed antenna was simulated and measured. Experimental result shows that the OFMYA with a combined DNG and DPS layer yields a gain of 15.9 dB. It indicates that the proposed antenna in this article is capable to provide a higher gain with a smaller surface size compared to other microstrip Yagi antennas. John Wiley and Sons 2017 Article PeerReviewed text en http://psasir.upm.edu.my/id/eprint/62564/1/YAGI.pdf Muhammad Chatib Quzwain, Kamelia and Ismail, Alyani and Sali, Aduwati (2017) Octagon fractal microstrip Yagi antenna with a combined DNG and DPS layer structure. Microwave and Optical Technology Letters, 59 (8). 1988 - 1993. ISSN 1098-2760; ESSN: 0895-2477 https://www.deepdyve.com/lp/wiley/octagon-fractal-microstrip-yagi-antenna-with-a-combined-dng-and-dps-XuF8fBIoz3 10.1002/mop.30666
spellingShingle Muhammad Chatib Quzwain, Kamelia
Ismail, Alyani
Sali, Aduwati
Octagon fractal microstrip Yagi antenna with a combined DNG and DPS layer structure
title Octagon fractal microstrip Yagi antenna with a combined DNG and DPS layer structure
title_full Octagon fractal microstrip Yagi antenna with a combined DNG and DPS layer structure
title_fullStr Octagon fractal microstrip Yagi antenna with a combined DNG and DPS layer structure
title_full_unstemmed Octagon fractal microstrip Yagi antenna with a combined DNG and DPS layer structure
title_short Octagon fractal microstrip Yagi antenna with a combined DNG and DPS layer structure
title_sort octagon fractal microstrip yagi antenna with a combined dng and dps layer structure
url http://psasir.upm.edu.my/id/eprint/62564/1/YAGI.pdf
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