Single and Double Side Comb-Shaped Patch Antenna Design Evolved From Rectangular Shape for Reduced Sized Antenna Applications
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Date
2020
Journal Title
Journal ISSN
Volume Title
Publisher
IEEE
Open Access Color
Green Open Access
No
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Publicly Funded
No
Abstract
This paper reports single and double side comb-shaped patch antennas to be used in reduced-sized antenna applications. The proposed antenna designs are evolved from regular rectangular shape antennas. The designed single and double side comb-shaped antennas were investigated in a complete set of study together with the rectangular shape antenna that resonates at 5 GHz frequency. Reflection coefficient (S-11) parameter of the designed comb-shaped antennas and the rectangular antenna were calculated together with three-dimensional (3D) directivity patterns in simulations for different arm lengths, arm widths, and arm numbers of the comb-shaped antennas. Results show that with the comb-shaped antennas it is possible to shift the resonance frequency of a regular rectangular shape antenna to a frequency lower than its half without enlarging the foot-print area or with the smaller foot-print area. Also, resonance frequency change and peak directivity variations at resonance frequencies of the antennas with geometrical parameters of the antennas were calculated, too. The findings indicate that due to the large number of geometrical parameters that come with the nature of the comb shape, comb-shaped antennas provide more flexibility while constructing an antenna.
Description
Kilic, Veli Tayfun/0000-0001-6806-9053; Aslan, Melih/0000-0003-4857-9608;
Keywords
Patch Antenna, Comb-Shaped, Resonance
Turkish CoHE Thesis Center URL
Fields of Science
0202 electrical engineering, electronic engineering, information engineering, 02 engineering and technology
Citation
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N/A

OpenCitations Citation Count
3
Source
International Conference on Radar, Antenna, Microwave, Electronics, and Telecommunications (ICRAMET) -- NOV 18-20, 2020 -- ELECTR NETWORK
Volume
Issue
Start Page
28
End Page
33
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CrossRef : 1
Scopus : 5
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Mendeley Readers : 3
SCOPUS™ Citations
5
checked on Feb 03, 2026
Web of Science™ Citations
3
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Page Views
2
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