Miniaturization of patch antenna through metamaterial approach: article / Wan Amirul Wan Mat Saidy
This paper is focusing on investigating a method of reducing size through metamaterial approach for Wi-Fi application. A patch antenna has been designed as a prototype to measure the performance. The antenna resonates at 2.45 GHz. Metamaterial characteristics exhibits negative permittivity and perme...
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my.uitm.ir.1100292025-02-10T23:55:21Z https://ir.uitm.edu.my/id/eprint/110029/ Miniaturization of patch antenna through metamaterial approach: article / Wan Amirul Wan Mat Saidy Wan Mat Saidy, Wan Amirul This paper is focusing on investigating a method of reducing size through metamaterial approach for Wi-Fi application. A patch antenna has been designed as a prototype to measure the performance. The antenna resonates at 2.45 GHz. Metamaterial characteristics exhibits negative permittivity and permeability after introducing DGS structures by Nicolson-Ross-Weir (NRW) equations. A Simulation has been carried out using Computer Simulation Technology Microwave Studio (CST-MWS). A Vector Network Analyzer (VNA) was used to measure return loss, S11. The antenna was fabricated on Rogers RO3003 substrate with permittivity, εr=3.00 and thickness, h=0.75mm. The simulation and measurement results show that the metamaterial antenna improves the return loss S11 and size of the antenna reduces by 38.23% and 82.77% respectively compare to the conventional antenna. 2013-07 Article PeerReviewed text en https://ir.uitm.edu.my/id/eprint/110029/1/110029.pdf Miniaturization of patch antenna through metamaterial approach: article / Wan Amirul Wan Mat Saidy. (2013) pp. 1-7. |
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This paper is focusing on investigating a method of reducing size through metamaterial approach for Wi-Fi application. A patch antenna has been designed as a prototype to measure the performance. The antenna resonates at 2.45 GHz. Metamaterial characteristics exhibits negative permittivity and permeability after introducing DGS structures by Nicolson-Ross-Weir (NRW) equations. A Simulation has been carried out using Computer Simulation Technology Microwave Studio (CST-MWS). A Vector Network Analyzer (VNA) was used to measure return loss, S11. The antenna was fabricated on Rogers RO3003 substrate with permittivity, εr=3.00 and thickness, h=0.75mm. The simulation and measurement results show that the metamaterial antenna improves the return loss S11 and size of the antenna reduces by 38.23% and 82.77% respectively compare to the conventional antenna. |
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Wan Mat Saidy, Wan Amirul |
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Wan Mat Saidy, Wan Amirul Miniaturization of patch antenna through metamaterial approach: article / Wan Amirul Wan Mat Saidy |
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Wan Mat Saidy, Wan Amirul |
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Wan Mat Saidy, Wan Amirul |
title |
Miniaturization of patch antenna through metamaterial approach: article / Wan Amirul Wan Mat Saidy |
title_short |
Miniaturization of patch antenna through metamaterial approach: article / Wan Amirul Wan Mat Saidy |
title_full |
Miniaturization of patch antenna through metamaterial approach: article / Wan Amirul Wan Mat Saidy |
title_fullStr |
Miniaturization of patch antenna through metamaterial approach: article / Wan Amirul Wan Mat Saidy |
title_full_unstemmed |
Miniaturization of patch antenna through metamaterial approach: article / Wan Amirul Wan Mat Saidy |
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miniaturization of patch antenna through metamaterial approach: article / wan amirul wan mat saidy |
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2013 |
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https://ir.uitm.edu.my/id/eprint/110029/1/110029.pdf https://ir.uitm.edu.my/id/eprint/110029/ |
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