SAR Induced in a Human Body Wearing clothes for Far-Field and Near-Field Exposure
碩士 === 元智大學 === 通訊工程學系 === 93 === In this thesis, the far field and the near field Finite-Difference Time-Domain (FDTD) methods are used to study (Specific Absorption Rate, SAR) induced in human bodies wearing clothes exposed to electromagnetic waves irradiated from wireless communication...
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ndltd-TW-092YZU006500212016-06-15T04:17:26Z http://ndltd.ncl.edu.tw/handle/35307759174143151353 SAR Induced in a Human Body Wearing clothes for Far-Field and Near-Field Exposure 人體穿著衣服時受到遠場及近場電磁輻射所感應之電磁特定吸收率研究 Jen-Cheng Tseng 曾仁成 碩士 元智大學 通訊工程學系 93 In this thesis, the far field and the near field Finite-Difference Time-Domain (FDTD) methods are used to study (Specific Absorption Rate, SAR) induced in human bodies wearing clothes exposed to electromagnetic waves irradiated from wireless communication facilities such as base stations and wireless notebooks. In the far field and the near field FDTD simulations, the multiple-grid technique and the equivalent material theory are implemented in the formal FDTD method in order to improve the computation efficiency and to save the computer memory, respectively. In this study, human bodies are adopted to be a homogeneous material of muscle tissue. From research results, it is found that the induced SAR in human bodies is far less than the international safety regulation of 1.6 W/kg for clothing materials with dielectric constants of 2~30 and conductivities of S/m. It is also found that the shielding effect of clothing material is strongly related to frequency. Hsing-Yi Chen 陳興義 2004 學位論文 ; thesis 68 zh-TW |
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碩士 === 元智大學 === 通訊工程學系 === 93 === In this thesis, the far field and the near field Finite-Difference Time-Domain (FDTD) methods are used to study (Specific Absorption Rate, SAR) induced in human bodies wearing clothes exposed to electromagnetic waves irradiated from wireless communication facilities such as base stations and wireless notebooks.
In the far field and the near field FDTD simulations, the multiple-grid technique and the equivalent material theory are implemented in the formal FDTD method in order to improve the computation efficiency and to save the computer memory, respectively. In this study, human bodies are adopted to be a homogeneous material of muscle tissue. From research results, it is found that the induced SAR in human bodies is far less than the international safety regulation of 1.6 W/kg for clothing materials with dielectric constants of 2~30 and conductivities of S/m. It is also found that the shielding effect of clothing material is strongly related to frequency.
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author2 |
Hsing-Yi Chen |
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Hsing-Yi Chen Jen-Cheng Tseng 曾仁成 |
author |
Jen-Cheng Tseng 曾仁成 |
spellingShingle |
Jen-Cheng Tseng 曾仁成 SAR Induced in a Human Body Wearing clothes for Far-Field and Near-Field Exposure |
author_sort |
Jen-Cheng Tseng |
title |
SAR Induced in a Human Body Wearing clothes for Far-Field and Near-Field Exposure |
title_short |
SAR Induced in a Human Body Wearing clothes for Far-Field and Near-Field Exposure |
title_full |
SAR Induced in a Human Body Wearing clothes for Far-Field and Near-Field Exposure |
title_fullStr |
SAR Induced in a Human Body Wearing clothes for Far-Field and Near-Field Exposure |
title_full_unstemmed |
SAR Induced in a Human Body Wearing clothes for Far-Field and Near-Field Exposure |
title_sort |
sar induced in a human body wearing clothes for far-field and near-field exposure |
publishDate |
2004 |
url |
http://ndltd.ncl.edu.tw/handle/35307759174143151353 |
work_keys_str_mv |
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