A Comparison of UWB Communication Characteristics for Various Corridors
碩士 === 淡江大學 === 電機工程學系碩士班 === 94 === A comparison of ultra-wideband (UWB) communication characteristics for six different geometrical shapes is investigated. These six shapes include the straight shape corridor with rectangular cross section, the straight shape corridor with arched cross section, th...
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ndltd-TW-094TKU054420132016-06-01T04:14:21Z http://ndltd.ncl.edu.tw/handle/99993262610421304661 A Comparison of UWB Communication Characteristics for Various Corridors 各種走道下的超寬頻通訊特性比較 Chih-Yung 張志勇 碩士 淡江大學 電機工程學系碩士班 94 A comparison of ultra-wideband (UWB) communication characteristics for six different geometrical shapes is investigated. These six shapes include the straight shape corridor with rectangular cross section, the straight shape corridor with arched cross section, the curved shape corridor with rectangular cross section, the curved shape corridor with arched cross section, L-shape corridor, and T-shape corridor. The impulse responses of these corridors are computed by applying shooting and bouncing ray/image (SBR/Image) techniques. By using the impulse response of these multi-path channels, the mean excess delay, root mean square (RMS) delay spread, and the number of multi-path arrivals that are within 10 dB of the peak multi-path arrival(NP10dB), and number of paths required to meet the 85% energy capture threshold(NP(85%)) for these six corridors could be obtained. Numerical results show that the RMS delay spread for the arched cross section corridors are smaller than those for the rectangular cross section corridors regardless of the shapes. And the RMS delay spread for the T-shape corridor is the largest among others. Chien-Ching Chiu 丘建青 2006 學位論文 ; thesis 55 zh-TW |
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碩士 === 淡江大學 === 電機工程學系碩士班 === 94 === A comparison of ultra-wideband (UWB) communication characteristics for six different geometrical shapes is investigated. These six shapes include the straight shape corridor with rectangular cross section, the straight shape corridor with arched cross section, the curved shape corridor with rectangular cross section, the curved shape corridor with arched cross section, L-shape corridor, and T-shape corridor. The impulse responses of these corridors are computed by applying shooting and bouncing ray/image (SBR/Image) techniques. By using the impulse response of these multi-path channels, the mean excess delay, root mean square (RMS) delay spread, and the number of multi-path arrivals that are within 10 dB of the peak multi-path arrival(NP10dB), and number of paths required to meet the 85% energy capture threshold(NP(85%)) for these six corridors could be obtained. Numerical results show that the RMS delay spread for the arched cross section corridors are smaller than those for the rectangular cross section corridors regardless of the shapes. And the RMS delay spread for the T-shape corridor is the largest among others.
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author2 |
Chien-Ching Chiu |
author_facet |
Chien-Ching Chiu Chih-Yung 張志勇 |
author |
Chih-Yung 張志勇 |
spellingShingle |
Chih-Yung 張志勇 A Comparison of UWB Communication Characteristics for Various Corridors |
author_sort |
Chih-Yung |
title |
A Comparison of UWB Communication Characteristics for Various Corridors |
title_short |
A Comparison of UWB Communication Characteristics for Various Corridors |
title_full |
A Comparison of UWB Communication Characteristics for Various Corridors |
title_fullStr |
A Comparison of UWB Communication Characteristics for Various Corridors |
title_full_unstemmed |
A Comparison of UWB Communication Characteristics for Various Corridors |
title_sort |
comparison of uwb communication characteristics for various corridors |
publishDate |
2006 |
url |
http://ndltd.ncl.edu.tw/handle/99993262610421304661 |
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