Miniature Design of Multi-Bands Intelligent Metamaterial for SAR Reduction

碩士 === 國立中山大學 === 電機工程學系研究所 === 100 === In the thesis, we propose an intelligent metamaterial to reduce the specific absorption rate (SAR) of cellular phone to phantom. We call our design intelligent metamaterial because it will not affect the antenna performance greatly. When the antenna is close t...

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Main Authors: Hsin-Hung Wu, 吳欣弘
Other Authors: Ken-Huang Lin
Format: Others
Language:zh-TW
Published: 2011
Online Access:http://ndltd.ncl.edu.tw/handle/89152856768298882569
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spelling ndltd-TW-100NSYS54420182015-10-13T21:17:52Z http://ndltd.ncl.edu.tw/handle/89152856768298882569 Miniature Design of Multi-Bands Intelligent Metamaterial for SAR Reduction 可降低SAR之多頻帶智慧型超穎材料縮小設計 Hsin-Hung Wu 吳欣弘 碩士 國立中山大學 電機工程學系研究所 100 In the thesis, we propose an intelligent metamaterial to reduce the specific absorption rate (SAR) of cellular phone to phantom. We call our design intelligent metamaterial because it will not affect the antenna performance greatly. When the antenna is close to the phantom, the metamaterial acts like a stopband filter, thus reducing the SAR. We design a small metamaterial cell resonating at GSM 900 band, having 2 cm x 2cm x 0.4 cm in size. We use three cells to shield the PIFA antenna and the SAR is reduced by 29.12 % at a distance of 15 mm away from the phantom. Then we design a metamaterial cell having 1 cm x 1.95 cm x 0.4 cm in size,operating in GSM 1800 band. We use four cells to shield the PIFA antenna and the SAR reduced by 40.2 % at a distance of 15 mm away from the phantom. We also propose a dualband (GSM 900/1800) metamaterial having 2 cm x 4 cm x 0.8 cm in size. We use nine metamaterial cells to shield the dualband antenna and the ground,the SAR reduced by 25 % at 900 MHz and 32.6 % at 1800 MHz at a distance of 15 mm away from the phantom. Ken-Huang Lin 林根煌 2011 學位論文 ; thesis 79 zh-TW
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description 碩士 === 國立中山大學 === 電機工程學系研究所 === 100 === In the thesis, we propose an intelligent metamaterial to reduce the specific absorption rate (SAR) of cellular phone to phantom. We call our design intelligent metamaterial because it will not affect the antenna performance greatly. When the antenna is close to the phantom, the metamaterial acts like a stopband filter, thus reducing the SAR. We design a small metamaterial cell resonating at GSM 900 band, having 2 cm x 2cm x 0.4 cm in size. We use three cells to shield the PIFA antenna and the SAR is reduced by 29.12 % at a distance of 15 mm away from the phantom. Then we design a metamaterial cell having 1 cm x 1.95 cm x 0.4 cm in size,operating in GSM 1800 band. We use four cells to shield the PIFA antenna and the SAR reduced by 40.2 % at a distance of 15 mm away from the phantom. We also propose a dualband (GSM 900/1800) metamaterial having 2 cm x 4 cm x 0.8 cm in size. We use nine metamaterial cells to shield the dualband antenna and the ground,the SAR reduced by 25 % at 900 MHz and 32.6 % at 1800 MHz at a distance of 15 mm away from the phantom.
author2 Ken-Huang Lin
author_facet Ken-Huang Lin
Hsin-Hung Wu
吳欣弘
author Hsin-Hung Wu
吳欣弘
spellingShingle Hsin-Hung Wu
吳欣弘
Miniature Design of Multi-Bands Intelligent Metamaterial for SAR Reduction
author_sort Hsin-Hung Wu
title Miniature Design of Multi-Bands Intelligent Metamaterial for SAR Reduction
title_short Miniature Design of Multi-Bands Intelligent Metamaterial for SAR Reduction
title_full Miniature Design of Multi-Bands Intelligent Metamaterial for SAR Reduction
title_fullStr Miniature Design of Multi-Bands Intelligent Metamaterial for SAR Reduction
title_full_unstemmed Miniature Design of Multi-Bands Intelligent Metamaterial for SAR Reduction
title_sort miniature design of multi-bands intelligent metamaterial for sar reduction
publishDate 2011
url http://ndltd.ncl.edu.tw/handle/89152856768298882569
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