Design of Tunable Multi-Band Miniature Fractal Antennas on a SAW Substrate

碩士 === 國立中山大學 === 通訊工程研究所 === 99 === In this thesis, the study focuses on the tunable frequency ratio of Sierpinski Gasket fractal antennas and we use the SAW substrate of piezoelectric material. By using the fractal structure and the substrate of piezoelectric material, the goal of the miniatur...

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Main Authors: Kuang-Ting Chi, 紀光庭
Other Authors: Ken-Huang Lin
Format: Others
Language:zh-TW
Published: 2011
Online Access:http://ndltd.ncl.edu.tw/handle/68040002829105978250
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spelling ndltd-TW-099NSYS56500842015-10-19T04:03:19Z http://ndltd.ncl.edu.tw/handle/68040002829105978250 Design of Tunable Multi-Band Miniature Fractal Antennas on a SAW Substrate 可整合於表面聲波元件之可調式多頻縮小化碎形天線設計 Kuang-Ting Chi 紀光庭 碩士 國立中山大學 通訊工程研究所 99 In this thesis, the study focuses on the tunable frequency ratio of Sierpinski Gasket fractal antennas and we use the SAW substrate of piezoelectric material. By using the fractal structure and the substrate of piezoelectric material, the goal of the miniaturized antenna is achieved. The proposed antenna can be widely used in wireless communication products. Firstly, we design the Sierpinski Gasket fractal antenna on the FR4 substrate. The asymmetric geometry of Sierpinski Gasket fractal structure is proposed and we choose the proper discontinuity locations to design the three-band and tunable antenna for IEEE 802.11b/g/a wireless communication systems. The preliminary design of the Sierpinski Gasket fractal structure on the piezoelectric substrate allows us to compare simulated and measured results to improve the non-ideal processing factors. Finally, comparing with the existing products, we reduce the size of the miniaturized fractal antenna to 5x5mm^2 on the SAW substrate by coplanar waveguide, coupled-fed, shorting with conductive adhesive and high iteration stage of half-Sierpinski Gasket fractal structure for GPS band and IEEE 802.11b/g applications. Ken-Huang Lin 林根煌 2011 學位論文 ; thesis 76 zh-TW
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language zh-TW
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sources NDLTD
description 碩士 === 國立中山大學 === 通訊工程研究所 === 99 === In this thesis, the study focuses on the tunable frequency ratio of Sierpinski Gasket fractal antennas and we use the SAW substrate of piezoelectric material. By using the fractal structure and the substrate of piezoelectric material, the goal of the miniaturized antenna is achieved. The proposed antenna can be widely used in wireless communication products. Firstly, we design the Sierpinski Gasket fractal antenna on the FR4 substrate. The asymmetric geometry of Sierpinski Gasket fractal structure is proposed and we choose the proper discontinuity locations to design the three-band and tunable antenna for IEEE 802.11b/g/a wireless communication systems. The preliminary design of the Sierpinski Gasket fractal structure on the piezoelectric substrate allows us to compare simulated and measured results to improve the non-ideal processing factors. Finally, comparing with the existing products, we reduce the size of the miniaturized fractal antenna to 5x5mm^2 on the SAW substrate by coplanar waveguide, coupled-fed, shorting with conductive adhesive and high iteration stage of half-Sierpinski Gasket fractal structure for GPS band and IEEE 802.11b/g applications.
author2 Ken-Huang Lin
author_facet Ken-Huang Lin
Kuang-Ting Chi
紀光庭
author Kuang-Ting Chi
紀光庭
spellingShingle Kuang-Ting Chi
紀光庭
Design of Tunable Multi-Band Miniature Fractal Antennas on a SAW Substrate
author_sort Kuang-Ting Chi
title Design of Tunable Multi-Band Miniature Fractal Antennas on a SAW Substrate
title_short Design of Tunable Multi-Band Miniature Fractal Antennas on a SAW Substrate
title_full Design of Tunable Multi-Band Miniature Fractal Antennas on a SAW Substrate
title_fullStr Design of Tunable Multi-Band Miniature Fractal Antennas on a SAW Substrate
title_full_unstemmed Design of Tunable Multi-Band Miniature Fractal Antennas on a SAW Substrate
title_sort design of tunable multi-band miniature fractal antennas on a saw substrate
publishDate 2011
url http://ndltd.ncl.edu.tw/handle/68040002829105978250
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