Design and Analysis of Ultra-Wideband Antenna for Asymmetrical Patch

碩士 === 臺北城市科技大學 === 機電整合研究所 === 102 === In this thesis, there is great possibilities that the radiated structure of antenna can be shrunk about 50% area by using the image charge theorem. Compared with the full-patch antenna in this work, the patch area is only 57% for image semi-patch structure ant...

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Main Authors: LIAO,KANG-CHUN, 廖罡淳
Other Authors: Deng,I-Chung
Format: Others
Language:zh-TW
Published: 2014
Online Access:http://ndltd.ncl.edu.tw/handle/17864334330080672138
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spelling ndltd-TW-102NTIS06510122016-03-11T04:13:44Z http://ndltd.ncl.edu.tw/handle/17864334330080672138 Design and Analysis of Ultra-Wideband Antenna for Asymmetrical Patch 具非對稱性補片結構之超寬頻天線設計與研究 LIAO,KANG-CHUN 廖罡淳 碩士 臺北城市科技大學 機電整合研究所 102 In this thesis, there is great possibilities that the radiated structure of antenna can be shrunk about 50% area by using the image charge theorem. Compared with the full-patch antenna in this work, the patch area is only 57% for image semi-patch structure antenna. The impedance bandwidth of full-path antenna extends from 3.3GHz to 6.54GHz, or percentage bandwidth = 65%. The peak of antenna gain is about is 3.3dBi at 5.8GHz. On the one hand, the impedance bandwidth of semi-path antenna extends from 3.12GHz to 6.92GHz, or percentage bandwidth = 75%. The peak of gain is only 2.7dBi at 6.2GHz. From the results above, the small size semi-patch antenna radiate similar frequency band to the full-patch one. It implies that the semi-patch antenna can substitution for full-patch one in spite of antenna gain. Semi-patch structure can also be designed in ultra-wideband antenna. The bandwidth of our ultra-wideband antenna with semi-patch structure is from 2.42GHz to 12.4 GHz, or percentage of bandwidth = 130.4% , covering the use of ultra-wideband antenna range. Deng,I-Chung 鄧一中 2014 學位論文 ; thesis 64 zh-TW
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language zh-TW
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description 碩士 === 臺北城市科技大學 === 機電整合研究所 === 102 === In this thesis, there is great possibilities that the radiated structure of antenna can be shrunk about 50% area by using the image charge theorem. Compared with the full-patch antenna in this work, the patch area is only 57% for image semi-patch structure antenna. The impedance bandwidth of full-path antenna extends from 3.3GHz to 6.54GHz, or percentage bandwidth = 65%. The peak of antenna gain is about is 3.3dBi at 5.8GHz. On the one hand, the impedance bandwidth of semi-path antenna extends from 3.12GHz to 6.92GHz, or percentage bandwidth = 75%. The peak of gain is only 2.7dBi at 6.2GHz. From the results above, the small size semi-patch antenna radiate similar frequency band to the full-patch one. It implies that the semi-patch antenna can substitution for full-patch one in spite of antenna gain. Semi-patch structure can also be designed in ultra-wideband antenna. The bandwidth of our ultra-wideband antenna with semi-patch structure is from 2.42GHz to 12.4 GHz, or percentage of bandwidth = 130.4% , covering the use of ultra-wideband antenna range.
author2 Deng,I-Chung
author_facet Deng,I-Chung
LIAO,KANG-CHUN
廖罡淳
author LIAO,KANG-CHUN
廖罡淳
spellingShingle LIAO,KANG-CHUN
廖罡淳
Design and Analysis of Ultra-Wideband Antenna for Asymmetrical Patch
author_sort LIAO,KANG-CHUN
title Design and Analysis of Ultra-Wideband Antenna for Asymmetrical Patch
title_short Design and Analysis of Ultra-Wideband Antenna for Asymmetrical Patch
title_full Design and Analysis of Ultra-Wideband Antenna for Asymmetrical Patch
title_fullStr Design and Analysis of Ultra-Wideband Antenna for Asymmetrical Patch
title_full_unstemmed Design and Analysis of Ultra-Wideband Antenna for Asymmetrical Patch
title_sort design and analysis of ultra-wideband antenna for asymmetrical patch
publishDate 2014
url http://ndltd.ncl.edu.tw/handle/17864334330080672138
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