Parallel coupled bandpass filter on metamaterial substrate / Ahmad Farhan Badrul Aziz
Filters play important roles in many radio frequencies (RF) or microwave applications including cellular radio, satellite communication, and radar to separate or combine different frequencies. Filter is used to select and confine the RF or microwave signals within assigned spectral limits. Parallel...
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my-uitm-ir.816732023-11-09T03:24:58Z Parallel coupled bandpass filter on metamaterial substrate / Ahmad Farhan Badrul Aziz 2013 Badrul Aziz, Ahmad Farhan Filters play important roles in many radio frequencies (RF) or microwave applications including cellular radio, satellite communication, and radar to separate or combine different frequencies. Filter is used to select and confine the RF or microwave signals within assigned spectral limits. Parallel Coupled Bandpass Filter (BPF) on Metamaterial Substrate was designed using CST Microwave Studio Software. There were two filters; conventional and metamaterial parallel coupled BPF. The parallel coupled filter was designed using the basic knowledge of odd and even wave coupling of transmission lines, which results in odd and even characteristic line impedances. Defected ground structure (DGS) was used to obtain the metamaterial properties on the substrate so that the characterization of return loss, insertion loss, bandwidth and the size of both filters can be analyzed. The return loss was improved about 22.5%, bandwidth about 15.53% and the size of the filter was reduced about 27% from the conventional by applying the metamaterial. 2013 Thesis https://ir.uitm.edu.my/id/eprint/81673/ https://ir.uitm.edu.my/id/eprint/81673/1/81673.pdf text en public degree Universiti Teknologi MARA (UiTM) Faculty of Electrical Engineering Sulaiman, Ahmad Asari |
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Universiti Teknologi MARA |
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UiTM Institutional Repository |
language |
English |
advisor |
Sulaiman, Ahmad Asari |
description |
Filters play important roles in many radio frequencies (RF) or microwave applications including cellular radio, satellite communication, and radar to separate or combine different frequencies. Filter is used to select and confine the RF or microwave signals within assigned spectral limits. Parallel Coupled Bandpass Filter (BPF) on Metamaterial Substrate was designed using CST Microwave Studio Software. There were two filters; conventional and metamaterial parallel coupled BPF. The parallel coupled filter was designed using the basic knowledge of odd and even wave coupling of transmission lines, which results in odd and even characteristic line impedances. Defected ground structure (DGS) was used to obtain the metamaterial properties on the substrate so that the characterization of return loss, insertion loss, bandwidth and the size of both filters can be analyzed. The return loss was improved about 22.5%, bandwidth about 15.53% and the size of the filter was reduced about 27% from the conventional by applying the metamaterial. |
format |
Thesis |
qualification_level |
Bachelor degree |
author |
Badrul Aziz, Ahmad Farhan |
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Badrul Aziz, Ahmad Farhan Parallel coupled bandpass filter on metamaterial substrate / Ahmad Farhan Badrul Aziz |
author_facet |
Badrul Aziz, Ahmad Farhan |
author_sort |
Badrul Aziz, Ahmad Farhan |
title |
Parallel coupled bandpass filter on metamaterial substrate / Ahmad Farhan Badrul Aziz |
title_short |
Parallel coupled bandpass filter on metamaterial substrate / Ahmad Farhan Badrul Aziz |
title_full |
Parallel coupled bandpass filter on metamaterial substrate / Ahmad Farhan Badrul Aziz |
title_fullStr |
Parallel coupled bandpass filter on metamaterial substrate / Ahmad Farhan Badrul Aziz |
title_full_unstemmed |
Parallel coupled bandpass filter on metamaterial substrate / Ahmad Farhan Badrul Aziz |
title_sort |
parallel coupled bandpass filter on metamaterial substrate / ahmad farhan badrul aziz |
granting_institution |
Universiti Teknologi MARA (UiTM) |
granting_department |
Faculty of Electrical Engineering |
publishDate |
2013 |
url |
https://ir.uitm.edu.my/id/eprint/81673/1/81673.pdf |
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1783736333705936896 |