A SIMULATION APPROACH TO MODEL THE RESONANT FREQUENCIES AND THE RADIATION Q-FACTORS FOR A CYLINDRICAL DIELECTRIC RESONATOR ANTENNA

Modeling is the foundation to design the dielectric resonator antenna by following our own specifications. Since it is very important, this project will discover the modeling of the resonant frequency and the radiation Q factor for a cylindrical dielectric resonator antenna. There are two types coup...

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Main Author: Hassan, Muhammad Kamil Hanis bin
Format: Final Year Project
Language:English
Published: Universiti Teknologi PETRONAS 2012
Subjects:
Online Access:http://utpedia.utp.edu.my/3795/1/TITLE_OF_THE_THESIS.pdf
http://utpedia.utp.edu.my/3795/
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spelling my-utp-utpedia.37952017-01-25T09:40:40Z http://utpedia.utp.edu.my/3795/ A SIMULATION APPROACH TO MODEL THE RESONANT FREQUENCIES AND THE RADIATION Q-FACTORS FOR A CYLINDRICAL DIELECTRIC RESONATOR ANTENNA Hassan, Muhammad Kamil Hanis bin TK Electrical engineering. Electronics Nuclear engineering Modeling is the foundation to design the dielectric resonator antenna by following our own specifications. Since it is very important, this project will discover the modeling of the resonant frequency and the radiation Q factor for a cylindrical dielectric resonator antenna. There are two types coupling that will be implemented in this project which microstrip line coupling and coplanar waveguide coupling. As for microstrip line coupling, the material of Cylindrical Dielectric Resonator Antenna (CDRA) been use is carbon and for coplanar waveguide coupling is CCTO (CaCu3Ti4O12). A thin layer of metal will be placed on the top of CDRA for both coupling. The designing process accomplished by using Computer Simulation Technology (CST) software. Agilent software will be involved in the analysis stage. The modeling process involved by using the result of the return loss of the simulation. Microsoft Excel will be used to record and plot the data of the return loss. By using the plotted graph, the curve fitting method will be used to generate the general equation of polynomial expression. Based on the polynomial expression, the value of the parameters will be altered in order to obtain the model that as close as the result of the simulated return loss. The 6th order polynomial has been chosen to be the model since it produces very accurate result. Universiti Teknologi PETRONAS 2012-05 Final Year Project NonPeerReviewed application/pdf en http://utpedia.utp.edu.my/3795/1/TITLE_OF_THE_THESIS.pdf Hassan, Muhammad Kamil Hanis bin (2012) A SIMULATION APPROACH TO MODEL THE RESONANT FREQUENCIES AND THE RADIATION Q-FACTORS FOR A CYLINDRICAL DIELECTRIC RESONATOR ANTENNA. Universiti Teknologi PETRONAS.
institution Universiti Teknologi Petronas
building UTP Resource Centre
collection Institutional Repository
continent Asia
country Malaysia
content_provider Universiti Teknologi Petronas
content_source UTP Electronic and Digitized Intellectual Asset
url_provider http://utpedia.utp.edu.my/
language English
topic TK Electrical engineering. Electronics Nuclear engineering
spellingShingle TK Electrical engineering. Electronics Nuclear engineering
Hassan, Muhammad Kamil Hanis bin
A SIMULATION APPROACH TO MODEL THE RESONANT FREQUENCIES AND THE RADIATION Q-FACTORS FOR A CYLINDRICAL DIELECTRIC RESONATOR ANTENNA
description Modeling is the foundation to design the dielectric resonator antenna by following our own specifications. Since it is very important, this project will discover the modeling of the resonant frequency and the radiation Q factor for a cylindrical dielectric resonator antenna. There are two types coupling that will be implemented in this project which microstrip line coupling and coplanar waveguide coupling. As for microstrip line coupling, the material of Cylindrical Dielectric Resonator Antenna (CDRA) been use is carbon and for coplanar waveguide coupling is CCTO (CaCu3Ti4O12). A thin layer of metal will be placed on the top of CDRA for both coupling. The designing process accomplished by using Computer Simulation Technology (CST) software. Agilent software will be involved in the analysis stage. The modeling process involved by using the result of the return loss of the simulation. Microsoft Excel will be used to record and plot the data of the return loss. By using the plotted graph, the curve fitting method will be used to generate the general equation of polynomial expression. Based on the polynomial expression, the value of the parameters will be altered in order to obtain the model that as close as the result of the simulated return loss. The 6th order polynomial has been chosen to be the model since it produces very accurate result.
format Final Year Project
author Hassan, Muhammad Kamil Hanis bin
author_facet Hassan, Muhammad Kamil Hanis bin
author_sort Hassan, Muhammad Kamil Hanis bin
title A SIMULATION APPROACH TO MODEL THE RESONANT FREQUENCIES AND THE RADIATION Q-FACTORS FOR A CYLINDRICAL DIELECTRIC RESONATOR ANTENNA
title_short A SIMULATION APPROACH TO MODEL THE RESONANT FREQUENCIES AND THE RADIATION Q-FACTORS FOR A CYLINDRICAL DIELECTRIC RESONATOR ANTENNA
title_full A SIMULATION APPROACH TO MODEL THE RESONANT FREQUENCIES AND THE RADIATION Q-FACTORS FOR A CYLINDRICAL DIELECTRIC RESONATOR ANTENNA
title_fullStr A SIMULATION APPROACH TO MODEL THE RESONANT FREQUENCIES AND THE RADIATION Q-FACTORS FOR A CYLINDRICAL DIELECTRIC RESONATOR ANTENNA
title_full_unstemmed A SIMULATION APPROACH TO MODEL THE RESONANT FREQUENCIES AND THE RADIATION Q-FACTORS FOR A CYLINDRICAL DIELECTRIC RESONATOR ANTENNA
title_sort simulation approach to model the resonant frequencies and the radiation q-factors for a cylindrical dielectric resonator antenna
publisher Universiti Teknologi PETRONAS
publishDate 2012
url http://utpedia.utp.edu.my/3795/1/TITLE_OF_THE_THESIS.pdf
http://utpedia.utp.edu.my/3795/
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score 13.211869