Constructions of Synchronous-Symmetric Channel-Hopping Sequences Over Galois Extension Field for Cognitive Radio Networks

碩士 === 國立中興大學 === 通訊工程研究所 === 105 === Channel-hopping (CH) sequences have recently been studied for dynamic multiple-access mobile applications, such as wireless sensor, vehicular ad hoc network and cognitive radio (CR) network. In this thesis, a new family of synchronous-symmetric CH sequences over...

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Main Authors: Chia-Sheng Chang, 張嘉升
Other Authors: 楊谷章
Format: Others
Language:en_US
Published: 2017
Online Access:http://ndltd.ncl.edu.tw/handle/77197576909383409107
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spelling ndltd-TW-105NCHU56500112017-10-09T04:30:39Z http://ndltd.ncl.edu.tw/handle/77197576909383409107 Constructions of Synchronous-Symmetric Channel-Hopping Sequences Over Galois Extension Field for Cognitive Radio Networks 在感知無線電網路延展質數通道跳頻碼之建構 Chia-Sheng Chang 張嘉升 碩士 國立中興大學 通訊工程研究所 105 Channel-hopping (CH) sequences have recently been studied for dynamic multiple-access mobile applications, such as wireless sensor, vehicular ad hoc network and cognitive radio (CR) network. In this thesis, a new family of synchronous-symmetric CH sequences over Galois extension field is constructed. They satisfy the channel-overlap, even-channel-use, and full channel utilization design criteria. Besides designing CH sequences, their operations in two transmission scenarios involving different collision-avoidance mechanisms are also analyzed and compared in terms of rendezvous-success (RS) rate. Our study shows that the new sequences have shorter period and maximum time to rendezvous, thus supporting more frequent rendezvous and higher rate in CR networks. 楊谷章 2017 學位論文 ; thesis 19 en_US
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language en_US
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description 碩士 === 國立中興大學 === 通訊工程研究所 === 105 === Channel-hopping (CH) sequences have recently been studied for dynamic multiple-access mobile applications, such as wireless sensor, vehicular ad hoc network and cognitive radio (CR) network. In this thesis, a new family of synchronous-symmetric CH sequences over Galois extension field is constructed. They satisfy the channel-overlap, even-channel-use, and full channel utilization design criteria. Besides designing CH sequences, their operations in two transmission scenarios involving different collision-avoidance mechanisms are also analyzed and compared in terms of rendezvous-success (RS) rate. Our study shows that the new sequences have shorter period and maximum time to rendezvous, thus supporting more frequent rendezvous and higher rate in CR networks.
author2 楊谷章
author_facet 楊谷章
Chia-Sheng Chang
張嘉升
author Chia-Sheng Chang
張嘉升
spellingShingle Chia-Sheng Chang
張嘉升
Constructions of Synchronous-Symmetric Channel-Hopping Sequences Over Galois Extension Field for Cognitive Radio Networks
author_sort Chia-Sheng Chang
title Constructions of Synchronous-Symmetric Channel-Hopping Sequences Over Galois Extension Field for Cognitive Radio Networks
title_short Constructions of Synchronous-Symmetric Channel-Hopping Sequences Over Galois Extension Field for Cognitive Radio Networks
title_full Constructions of Synchronous-Symmetric Channel-Hopping Sequences Over Galois Extension Field for Cognitive Radio Networks
title_fullStr Constructions of Synchronous-Symmetric Channel-Hopping Sequences Over Galois Extension Field for Cognitive Radio Networks
title_full_unstemmed Constructions of Synchronous-Symmetric Channel-Hopping Sequences Over Galois Extension Field for Cognitive Radio Networks
title_sort constructions of synchronous-symmetric channel-hopping sequences over galois extension field for cognitive radio networks
publishDate 2017
url http://ndltd.ncl.edu.tw/handle/77197576909383409107
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