Electromagnetic Penetration into Thick Conducting Screen with Inhomogenously Filled Slot of Arbitrary Cross Section

碩士 === 國立臺灣科技大學 === 工程技術研究所 === 81 === A method based on a generalized admittance matrix representation handling inhomogenously filled slot of arbitrary cross section is presented in this work. The geometry of the problem is divided into t...

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Main Authors: Lee Cheng-Loung, 李承龍
Other Authors: Wang Tai-Mo
Format: Others
Language:zh-TW
Published: 1993
Online Access:http://ndltd.ncl.edu.tw/handle/21763066123577266497
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spelling ndltd-TW-081NTUST0271432016-02-10T04:08:46Z http://ndltd.ncl.edu.tw/handle/21763066123577266497 Electromagnetic Penetration into Thick Conducting Screen with Inhomogenously Filled Slot of Arbitrary Cross Section 非均勻介質填充的不規則厚金屬板隙縫的電磁穿透 Lee Cheng-Loung 李承龍 碩士 國立臺灣科技大學 工程技術研究所 81 A method based on a generalized admittance matrix representation handling inhomogenously filled slot of arbitrary cross section is presented in this work. The geometry of the problem is divided into three regions:two half-spaces on each side of thick screen and the slot.Each region is represented by a generalized admittance matrix.The slot region is subdivided into different subregions according to their material loading. Each have its admittance matrix which is derived via a boundary -integral equation.The overall admittance matrix of the slot region is obtained by a connect algorithm by cascading each subregion.Once the admittance of the three regions are obtaind, the aperture fields are readily found and peneration field can be calculated. Wang Tai-Mo 王臺模 1993 學位論文 ; thesis 74 zh-TW
collection NDLTD
language zh-TW
format Others
sources NDLTD
description 碩士 === 國立臺灣科技大學 === 工程技術研究所 === 81 === A method based on a generalized admittance matrix representation handling inhomogenously filled slot of arbitrary cross section is presented in this work. The geometry of the problem is divided into three regions:two half-spaces on each side of thick screen and the slot.Each region is represented by a generalized admittance matrix.The slot region is subdivided into different subregions according to their material loading. Each have its admittance matrix which is derived via a boundary -integral equation.The overall admittance matrix of the slot region is obtained by a connect algorithm by cascading each subregion.Once the admittance of the three regions are obtaind, the aperture fields are readily found and peneration field can be calculated.
author2 Wang Tai-Mo
author_facet Wang Tai-Mo
Lee Cheng-Loung
李承龍
author Lee Cheng-Loung
李承龍
spellingShingle Lee Cheng-Loung
李承龍
Electromagnetic Penetration into Thick Conducting Screen with Inhomogenously Filled Slot of Arbitrary Cross Section
author_sort Lee Cheng-Loung
title Electromagnetic Penetration into Thick Conducting Screen with Inhomogenously Filled Slot of Arbitrary Cross Section
title_short Electromagnetic Penetration into Thick Conducting Screen with Inhomogenously Filled Slot of Arbitrary Cross Section
title_full Electromagnetic Penetration into Thick Conducting Screen with Inhomogenously Filled Slot of Arbitrary Cross Section
title_fullStr Electromagnetic Penetration into Thick Conducting Screen with Inhomogenously Filled Slot of Arbitrary Cross Section
title_full_unstemmed Electromagnetic Penetration into Thick Conducting Screen with Inhomogenously Filled Slot of Arbitrary Cross Section
title_sort electromagnetic penetration into thick conducting screen with inhomogenously filled slot of arbitrary cross section
publishDate 1993
url http://ndltd.ncl.edu.tw/handle/21763066123577266497
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