Model of Hilbert curve fractal antenna fed by coplanar waveguide for multi-band wireless communications
There are many techniques to improve the characteristic of antennas. In this work we use ideas of the fractal. The purpose of this work is to design and analyze Hilbert curve fractal antennas resulting in the empirical model. We use the Zealand program for simulating antennas. The antennas receive a...
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th-mahidol.244372018-08-24T08:49:10Z Model of Hilbert curve fractal antenna fed by coplanar waveguide for multi-band wireless communications Niruth Prombutr Prayoot Akkaraekthalin Mahidol University King Mongkut's University of Technology North Bangkok Engineering There are many techniques to improve the characteristic of antennas. In this work we use ideas of the fractal. The purpose of this work is to design and analyze Hilbert curve fractal antennas resulting in the empirical model. We use the Zealand program for simulating antennas. The antennas receive and transmit in many frequency resonances. The first frequency resonance is 1.8 GHz band and others are higher than 1.8 GHz. We design a small Hilbert curve fractal antenna. We analyze this antenna by using the concept of resonance frequency that depends on the dimension size of the antenna to yield the model of Hilbert curve antenna that can be used to predict the multi resonance frequency. In the experiment we found that the percent of difference for this model is lower than 4.6%. That model will be helpful for design Hilbert curve fractal antennas. 2018-08-24T01:49:10Z 2018-08-24T01:49:10Z 2007-12-01 Conference Paper Asia-Pacific Microwave Conference Proceedings, APMC. (2007) 10.1109/APMC.2007.4554654 2-s2.0-51849126513 https://repository.li.mahidol.ac.th/handle/123456789/24437 Mahidol University SCOPUS https://www.scopus.com/inward/record.uri?partnerID=HzOxMe3b&scp=51849126513&origin=inward |
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Engineering Niruth Prombutr Prayoot Akkaraekthalin Model of Hilbert curve fractal antenna fed by coplanar waveguide for multi-band wireless communications |
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There are many techniques to improve the characteristic of antennas. In this work we use ideas of the fractal. The purpose of this work is to design and analyze Hilbert curve fractal antennas resulting in the empirical model. We use the Zealand program for simulating antennas. The antennas receive and transmit in many frequency resonances. The first frequency resonance is 1.8 GHz band and others are higher than 1.8 GHz. We design a small Hilbert curve fractal antenna. We analyze this antenna by using the concept of resonance frequency that depends on the dimension size of the antenna to yield the model of Hilbert curve antenna that can be used to predict the multi resonance frequency. In the experiment we found that the percent of difference for this model is lower than 4.6%. That model will be helpful for design Hilbert curve fractal antennas. |
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Mahidol University |
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Mahidol University Niruth Prombutr Prayoot Akkaraekthalin |
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Conference or Workshop Item |
author |
Niruth Prombutr Prayoot Akkaraekthalin |
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Niruth Prombutr |
title |
Model of Hilbert curve fractal antenna fed by coplanar waveguide for multi-band wireless communications |
title_short |
Model of Hilbert curve fractal antenna fed by coplanar waveguide for multi-band wireless communications |
title_full |
Model of Hilbert curve fractal antenna fed by coplanar waveguide for multi-band wireless communications |
title_fullStr |
Model of Hilbert curve fractal antenna fed by coplanar waveguide for multi-band wireless communications |
title_full_unstemmed |
Model of Hilbert curve fractal antenna fed by coplanar waveguide for multi-band wireless communications |
title_sort |
model of hilbert curve fractal antenna fed by coplanar waveguide for multi-band wireless communications |
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2018 |
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https://repository.li.mahidol.ac.th/handle/123456789/24437 |
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1763489729017282560 |