Printed (2x1) patch array antenna at 2.45 GHz / Sumayah Ilias
This paper proposed of a microstrip rectangular patch array antenna with operating frequency at 2.45GHz for WLAN application. The antenna array of 2x1 microstrip rectangular patch antenna with microstrip line feeding based on quarter-wave impedance matching technique was designed and simulated using...
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my-uitm-ir.689552023-01-09T03:05:27Z Printed (2x1) patch array antenna at 2.45 GHz / Sumayah Ilias 2011 Ilias, Sumayah Antennas This paper proposed of a microstrip rectangular patch array antenna with operating frequency at 2.45GHz for WLAN application. The antenna array of 2x1 microstrip rectangular patch antenna with microstrip line feeding based on quarter-wave impedance matching technique was designed and simulated using CST Microwave Environment software. The performance of the designed antenna was analyzed in term of return loss, VSWR, bandwidth, directivity, radiation pattern and gain. The antenna was then fabricated on the substrate type FR-4 with dielectric constant of 4.7 and thickness of 1.6mm respectively. The antenna was measured using Vector Network Analyzer (VNA) and the details of the proposed antenna design and simulation result for 2.45GHz WLAN band are promising. The return loss, si 1 for the single patch antenna and (2x1) array antenna are -12.938 and -19.468 respectively. Other than that, the simulated bandwidth for the single patch antenna is 3.82%. Meanwhile for the (2x1) array antenna is 3.98%.This is proved that (2x1) array antenna is better than single patch antenna in term of wider bandwidth, higher gain and better directivity. 2011 Thesis https://ir.uitm.edu.my/id/eprint/68955/ https://ir.uitm.edu.my/id/eprint/68955/1/68955.pdf text en public degree Universiti Teknologi MARA (UiTM) Faculty of Electrical Engineering Mozi, Aiza Mahyuni |
institution |
Universiti Teknologi MARA |
collection |
UiTM Institutional Repository |
language |
English |
advisor |
Mozi, Aiza Mahyuni |
topic |
Antennas |
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Antennas Ilias, Sumayah Printed (2x1) patch array antenna at 2.45 GHz / Sumayah Ilias |
description |
This paper proposed of a microstrip rectangular patch array antenna with operating frequency at 2.45GHz for WLAN application. The antenna array of 2x1 microstrip rectangular patch antenna with microstrip line feeding based on quarter-wave impedance matching technique was designed and simulated using CST Microwave Environment software. The performance of the designed antenna was analyzed in term of return loss, VSWR, bandwidth, directivity, radiation pattern and gain. The antenna was then fabricated on the substrate type FR-4 with dielectric constant of 4.7 and thickness of 1.6mm respectively. The antenna was measured using Vector Network Analyzer (VNA) and the details of the proposed antenna design and simulation result for 2.45GHz WLAN band are promising. The return loss, si 1 for the single patch antenna and (2x1) array antenna are -12.938 and -19.468 respectively. Other than that, the simulated bandwidth for the single patch antenna is 3.82%. Meanwhile for the (2x1) array antenna is 3.98%.This is proved that (2x1) array antenna is better than single patch antenna in term of wider bandwidth, higher gain and better directivity. |
format |
Thesis |
qualification_level |
Bachelor degree |
author |
Ilias, Sumayah |
author_facet |
Ilias, Sumayah |
author_sort |
Ilias, Sumayah |
title |
Printed (2x1) patch array antenna at 2.45 GHz / Sumayah Ilias |
title_short |
Printed (2x1) patch array antenna at 2.45 GHz / Sumayah Ilias |
title_full |
Printed (2x1) patch array antenna at 2.45 GHz / Sumayah Ilias |
title_fullStr |
Printed (2x1) patch array antenna at 2.45 GHz / Sumayah Ilias |
title_full_unstemmed |
Printed (2x1) patch array antenna at 2.45 GHz / Sumayah Ilias |
title_sort |
printed (2x1) patch array antenna at 2.45 ghz / sumayah ilias |
granting_institution |
Universiti Teknologi MARA (UiTM) |
granting_department |
Faculty of Electrical Engineering |
publishDate |
2011 |
url |
https://ir.uitm.edu.my/id/eprint/68955/1/68955.pdf |
_version_ |
1783735826532794368 |