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研究生: 陳乃維
CHEN , NAI-WEI
論文名稱: 異質性無線網路環境整合與QoS效能分析-以IEEE 802.11e與IEEE 802.16d為例
An Integrated Heterogeneous Network Evaluation QoS Performance Analysis for IEEE 802.11e and IEEE 802.16d Wireless Network
指導教授: 唐文華
Tarng , Wen-Hua
口試委員:
學位類別: 碩士
Master
系所名稱: 電機資訊學院 - 資訊工程學系
Computer Science
論文出版年: 2009
畢業學年度: 97
語文別: 中文
論文頁數: 89
中文關鍵詞: IEEE 802.11IEEE 802.16服務品質異質性網域整合
外文關鍵詞: IEEE 802.11, IEEE 802.16, QoS, the integrated heterogeneous network
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  • 隨著無線網路的蓬勃發展,擁有廣大使用者的IEEE 802.11(WLAN),因為其傳輸距離及傳輸頻寬已漸漸無法滿足眾多服務的需求,因而誕生了下一個世代的無線網路通訊標準IEEE 802.16(WiMAX)。它具有下例特性︰(一)可同時提供不同的服務品質(Quality of Service)需求;(二)可提供高頻寬的傳輸速率;(三)涵蓋的範圍更廣;(四)建置與維修管理成本低;(五)具有最後一哩(The Last Mile)的特性。基於上述優良特性,本研究將探討以下兩部份︰(一)如何將無線網路IEEE 802.11與IEEE 802.16作異質性網域的整合;(二)設計出一套可以共同使用在IEEE 802.11與IEEE 802.16通訊協定上的服務品質機制,並達到以最少的頻寬滿足所有服務的期望。


    Along with wireless network’s vigorous development, the transmission range and bandwidth of IEEE 802.11 (WLAN), which used to have a large number of users, is now becoming unable to meet the requirements of numerous services gradually. Therefore, the next-generation wireless network, IEEE 802.16 (WiMAX) was thus born. It has the following characteristics: (1) it can simultaneously provide different kinds of quality of service (QoS); (2) it can provide high bandwidth data rate; (3) it can cover a wider range of area; (4) the cost of establishment and management is low; (5) it has “the last mile” characteristics. Based on the above attractive characteristics, this paper discusses the following two issues: (1) how to integrate IEEE 802.16 with IEEE 802.11 to create an integrated heterogeneous network; (2) how to design a set of QoS mechanism for application in IEEE 802.16 and IEEE 802.11 integrated network to satisfy all service requirements by given the least bandwidth.

    第一章 導論 8 第一節 無線網路的發展 8 第二節 文獻探討 9 第三節 研究動機與目的 10 第四節 論文架構 11 第二章 背景知識 12 第一節 IEEE 802.11概述 12 一、IEEE 802.11媒體存取控制 13 二、IEEE 802.11e 18 第二節 IEEE 802.16概述 25 一、媒體存取協議數據單元 30 二、訊框架構 36 三、連線方法及網路初始化 40 四、頻寬請求與分配 42 五、資源競爭 49 六、品質服務之架構與運作 51 第三節 IEEE 802.11與IEEE 802.16實體層與媒體層之差異 57 一、IEEE 802.11與IEEE 802.16實體層之比較 57 二、IEEE 802.11與IEEE 802.16媒體控制層之比較 59 第三章 研究方法 62 第一節 系統架構 62 一、網路架構 62 二、QoS參數的對應方式 62 第二節 QoS演算法與流程 65 一、BS上的排程演算法 65 二、SS上的排程演算法 70 第四章 模擬結果與數據分析 73 第一節 吞吐量 74 第二節 延遲時間 81 第三節 遺失率 83 第五章 結論與未來研究 85 第一節 結論 85 第二節 未來研究 85

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