博碩士論文 89523011 詳細資訊




以作者查詢圖書館館藏 以作者查詢臺灣博碩士 以作者查詢全國書目 勘誤回報 、線上人數:102 、訪客IP:3.145.98.49
姓名 林俊彥(Chun-Yan Lin)  查詢紙本館藏   畢業系所 通訊工程學系
論文名稱 在DWDM中具QoS之Fast Process OBS
(Fast process OBS supported Quality of Service in DWDM networks)
相關論文
★ UHF頻段RFID彈藥管理系統之設計、實作與評估★ 移動物偵測與追蹤之IP Camera系統
★ SDN自適應性自動化網路安全之研究★ Wi-Fi Direct Service 應用於IoT
★ 射頻前端電路應用於載波聚合長期演進技術★ 3C無線充電裝置運用在車載系統所產生之EMI輻射
★ 基於LoRa技術的物聯網前端防盜警示感測裝置實作與評估★ DOCSIS 3.1 效能研究 與下行通道干擾阻隔之設計
★ 藍芽無線光學投影翻譯筆★ 手持裝置應用於MIMO ( 8x8 ) Wi-Fi系統之設計
★ 基於無伺服器運算之智慧農業雲端系統設計與研究★ 嵌入式系統實現電梯物聯網
★ 在802.11 Ad-Hoc網路中基於速率考量之路由協定設計★ 合作博弈與灰色模糊方法改善無線網路之性能
★ 採用拍賣策略之動態分散式方法於減少叢集小型基地台間干擾之研究★ 在LTE-A下聚合未授權頻譜及動態分配資源以優化系統效能
檔案 [Endnote RIS 格式]    [Bibtex 格式]    [相關文章]   [文章引用]   [完整記錄]   [館藏目錄]   [檢視]  [下載]
  1. 本電子論文使用權限為同意立即開放。
  2. 已達開放權限電子全文僅授權使用者為學術研究之目的,進行個人非營利性質之檢索、閱讀、列印。
  3. 請遵守中華民國著作權法之相關規定,切勿任意重製、散佈、改作、轉貼、播送,以免觸法。

摘要(中) 論文摘要
由於網路上多媒體即時傳輸及各種寬頻網路應用的發展日新月異,Internet 對於多媒體通訊服務如WWW embedded or plug-in 、Real time Voice /Video ,電子商務,網路電話(IP-Telephone) 、WebTV …等的要求與日俱增,對於高速網路的需求日益殷切,雖然Optical Fiber 的鋪設提高了主幹的頻寬,但對於指數成長的網路流量仍不敷所需。 近年來高密度分波多工技術(Dense Wavelength Division Multiplexing-DWDM)的發展,以高密度的分波多工器及光放大器所組成的光纖網路,已經對傳統的傳輸網路帶來了革命性的改變;它不僅大大地提昇了骨幹傳輸網路的頻寬,而且降低網路費用以及使網路傳輸系統的控制維護趨於簡單。但傳統Sonet/SDH Circuit Switch 的傳輸型態Over head 較大,降低了整體的效能而為了簡化通信協定,提高傳輸效能IP over DWDM的應用也因應而生 。
傳統IP V4 的網路只提供了best effort 的傳輸服務,對於資料型態多元化,服務要求複雜化的Next Generation Optical Internet 實是不敷所需。因此在DWDM 上建立一套完整的QoS機制,便成為建制All Optical Network 的熱門話題,尤其在經歷IP over ATM 數年來的研究,以及MPLS 的發展,QoS in Internet 已是大勢所趨,未來提供QoS的網路管理將是一大課題。
所以如何透過簡單的機制來有效管理QoS in DWDM Network 及增進IP over DWDM的傳輸效能,簡少Optical buffer的需求便是我未來研究的目標。
摘要(英) Abstract:
Dense Wavelength-division multiplexing has emerged as an important physical layer technology. Optical transmission provides a physical layer capable of carrying bits at the speed of the order of a gigabit per second. Optical burst switching is proposed to overcome the shortcomings of conventional WDM deployment, such as lack of fine bandwidth granularity in wavelength routing and electronic speed bottlenecks in SONET/SDH. In this article, we describe an architecture for IP network over the OBS DWDM transmission core. The use of MPLS-type technique for forwarding data bursts and the inclusion of a medium access control layer between the optical (DWDM) and IP layers are the key ingredients of the proposed architecture.
In particular, the architecture is based on provisioning MPLS paths, also called label switched paths, of desired quality of service through the OBS WDM transmission core. The MAC layer performs various OBS-specific functions, such as burst assembly, burst scheduling, and offset setting/traffic shaping. While burst assembly and burst scheduling are relatively straightforward, we point out that the offset setting strategy has significant impact on the performance of IP network operating over OBS DWDM core.
We describe a shaping scheme to set the offset, an important system parameter for OBS, between the successive data bursts of a given data stream (label switched path) and their associated control packets. This scheme results in robust operation of the network and also facilitates traffic engineering. Guidelines are provided for implementing various IP QoS mechanisms in the optical backbone using OBS.
關鍵字(中) ★ 高密度分波多工
★ 光纖通訊
關鍵字(英) ★ DWDM
★ OBS
★ Optical Network
★ Switching
★ Schedul
論文目次 目錄
目錄……………………………………………Ⅰ
圖目……………………………………………Ⅲ
表目……………………………………………Ⅵ
第一章 序論
1.1 前言………………………………………1
1.2 動機………………………………………2
1.3 論文組織架構……………………………3
第二章 DWDM網路系統架構介紹
2.1 DWDM系統之介紹
2.1.1 什麼是DWDM…………………………5
2.1.2 OBS系統之介紹
2.1.2.1 OBS系統的概念………………7
2.1.2.2 邊界路由器(Edge Router)…8
2.1.2.3 核心路由器(Core Router)…9
2.1.3 DWDM相關設備介紹…………………10
2.1.4 IP over DWDM………………………14
2.1.5 資料通道排程介紹…………………15
第三章 動態頻寬調整機制介紹
3.1 前言………………………………………17
3.2 動態頻寬調整流程介紹…………………19
第四章 模擬分析及數據討論
4.1 前言………………………………………31
4.2 數據結果之分析與討論
4.2.1 類別A發生重載的情形………………………………32
4.2.2 類別B發生重載的情形………………………………35
4.2.3 類別C發生重載的情形………………………………39
4.2.4 類別A及類別B同時發生重載的情形……………… 43
4.2.5 類別A及類別C同時發生重載的情形……………… 46
4.2.6 類別B及類別C同時發生重載的情形……………… 50
4.2.7 類別A及類別B及類別C同時發生重載的情形………54
4.3 結論………………………………………………………59
第五章 結論與未來展望 60
參考文獻 61
參考文獻 參考文獻
[1]Yijun Xiong; Vandenhoute, M.; Cankaya, H.C. “Control architecture in
optical burst-switched WDM networks ”Selected Areas in Communications, IEEE
Journal on , Volume: 18 Issue: 10 , Oct. 2000
[2]Golmie, N.; Ndousse, T.D.; Su, D.H. “A differentiated optical services
model for WDM networks ”IEEE Communications Magazine , Volume: 38 Issue:
2 , Feb. 2000 Page(s): 68 -73
[3]Myungsik Yoo; Chunming Qiao “A novel switching paradigm for buffer-less WDM
networks ”Optical Fiber Communication Conference, 1999, and the
International Conference on Integrated Optics and Optical Fiber
Communication. OFC/IOOC ’’99. Technical Digest , 1999 Page(s): 177 -179 vol.3
[4]Nasir Ghani Nasir Ghani, Ph.D.“IP Over Optical Networks”Industry Program
Chair, OPTICOMM 2000
[5]Tench, R.E. “Challenges in the design and packaging of optical amplifiers
for DWDM lightwave networks”Electronic Components and Technology
Conference, 1999. Proceedings. 49th , Page(s): 9 -12
[6]Shaowen Song “Switching issues in the all optical DWDM network”Electrical
and Computer Engineering, 2000 Canadian Conference on , Volume: 2 , 2000 Page
(s): 998 -1002 vol.2
[7]Kuang-Yi Wu; Jian-Yu Liu “Self-routing wavelength switches”
Vertical-Cavity Lasers, Technologies for a Global Information
Infrastructure, WDM Components Technology, Advanced Semiconductor Lasers and
Applications, Gallium Nitride Materials, Processing, and Devices, 1997
Digest of the IEEE/LEOS Summer Topical Meetin , 1997 Page(s): 30 -31
[8]Malis, A.G. “Reconstructing transmission networks using ATM and DWDM”IEEE
Communications Magazine , Volume: 37 Issue: 6 , June 1999 Page(s): 140 -145
[9]Mysore, S.; Villa, R.; Beveridge, G. “Performance of broadband DWDM
networks”Electronic-Enhanced Optics, Optical Sensing in Semiconductor
Manufacturing, Electro-Optics in Space, Broadband Optical Networks, 2000.
Digest of the LEOS Summer Topical Meetings , 2000 Page(s): IV23 -IV24
[10]Callegati, F.; Casoni, M.; Raffaelli, C.“Packet optical networks for high-
speed TCP-IP backbones”IEEE Communications Magazine , Volume: 37 Issue:
1 , Jan. 1999 Page(s): 124 -129
[11]Strand, J.; Chiu, A.L.; Tkach, R“Issues for routing in the optical layer”
IEEE Communications Magazine , Volume: 39 Issue: 2 , Feb. 2001 Page(s): 81 - 87
[12]Junhua Tang; Liren Zhang “Effect of IP traffic on optical QoS in DWDM
networks”Networks, 2000. (ICON 2000). Proceedings. IEEE International
Conference on , 2000 Page(s): 370 -374
[13]Hunter, D.K.; Nizam, M.H.M.; Chia, M.C.; Andonovic, I.; Guild, K.M.;
Tzanakaki, A.; O’’Mahony, M.J.; Bainbridge, L.D.; Stephens, M.F.C.; Penty,
R.V.; White, I.H.“WASPNET: a wavelength switched packet network”IEEE
Communications Magazine , Volume: 37 Issue: 3 , March 1999 Page(s): 120 -129
[14]Verma, S.; Chaskar, H.; Ravikanth, R. “Optical burst switching: a viable
solution for terabit IP backbone”IEEE Network , Volume: 14 Issue: 6 , Nov.-
Dec. 2000 Page(s): 48 -53
[15]Myungsik Yoo; Chunming Qiao; Dixit, S. “Optical burst switching for
service differentiation in the next-generation optical Internet”IEEE
Communications Magazine , Volume: 39 Issue: 2 , Feb. 2001 Page(s): 98 -104
指導教授 吳中實(Jung-Shyr Wu) 審核日期 2002-6-28
推文 facebook   plurk   twitter   funp   google   live   udn   HD   myshare   reddit   netvibes   friend   youpush   delicious   baidu   
網路書籤 Google bookmarks   del.icio.us   hemidemi   myshare   

若有論文相關問題,請聯絡國立中央大學圖書館推廣服務組 TEL:(03)422-7151轉57407,或E-mail聯絡  - 隱私權政策聲明