![]() |
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:9 、訪客IP:18.217.52.224
姓名 曾前紹(Chien-Shao Tseng) 查詢紙本館藏 畢業系所 資訊工程學系 論文名稱 即時多媒體環境下的負載適應性 TCP-Friendly 速率控制
(TMRC: A Load-Adaptive TCP-Friendly Rate Control Protocol for Real-time Multimedia Environment)相關論文 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]
- 本電子論文使用權限為同意立即開放。
- 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。
- 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) 在本論文中,我們提出並分析一套新的網路壅塞控制機制TMRC(Time-based Model Rate Control),使其能夠應用在即時多媒體(Real-time Multimedia)的環境上。TMRC為使用以時間為基礎的端點對端點壅塞控制機制,能夠估測出適當的傳輸速率,同時確保與其他網路連線相互競爭時的公平性。
使用TMRC,傳送端可以依據接收端所估測出來的數值,精確地調整其傳輸速率,以提供與TCP友善且公平的競爭分享網路頻寬,同時也確保網路資料傳輸時,速率的穩定性。如此的特性,使我們所提出的方法能夠符合即時多媒體串流的需求。
為了展示TMRC的效能,我們將與其他TCP-Friendly速率控制機制做比較,如TFRC(TCP-Friendly Rate Control)。摘要(英) In this paper, we introduce and analyze a new congestion control
approach for real-time multimedia applications, called TMRC
(Time-based Model TCP-Friendly Rate Control).
TMRC is a time-based end-to-end congestion control mechanism,
which could estimate an adequate sending rate and assures
the fairness against competing flows.
Via this mechanism, the sender can explicitly adjust its sending rate as
a function of the measured rate reported by the correspond receiver.
In long term, TMRC acts as a TCP-friendly flow with the same throughput as
other flows while in short term it performs more stable in its sending rate.
This makes our mechanism suitable for real-time multimedia applications.
To demonstrate its better performance,
this paper also compare TMRC to other representative
TCP-friendly rate control mechanism, such as TFRC.關鍵字(中) ★ 速率控制
★ 即時
★ 多媒體關鍵字(英) ★ TCP-Friendly
★ real time
★ multimedia
★ Rate Control論文目次 1 Introduction 1
2 Related Works 7
3 TMRC Protocol 13
4 Simulation and Analysis 22
5 Conclusion and Future Works 39參考文獻 [1] B. Khasnabish, “Next-Generation Corporate Networks,” IT Professional, 2(1):56–60, January/February 2000.
[2] Y.-G. Kim, J. Kim, and C.-C. J. Kuo, “Tcp-friendly internet video with smooth and fast rate adaptation and network-aware error control,” submitted to IEEE Trans. on Circuits and Systems for Video Technology (Special Issue on Internet Streaming Video), (submitted June 2000, revised).
[3] J. Postel, “User Datagram Protocol,” RFC 768, Standard, August 1980.
[4] S. Floyd and K. Fall, “Promoting the Use of End-to-End Congestion Control in the Internet,” IEEE/ACM Transactions on Networking, August 1999.
[5] L. Trajkovic and S. J. Golestani, “Congestion Control for Multimedia Services,” IEEE Network, 6(5):20–26, Sept. 1992.
[6] B. Braden, D. Clark, J. Crowcroft, B. Davie, S. Deering, D. Estrin, S. Floyd, V. Jacobson, G. Minshall, C. Partridge, L. Peterson, K. Ramakrishnan, S. Shenker, J. Wroclawski, and L. Zhang, “Recommendations on Queue Management and Congestion Avoidance in the Internet,” RFC 2309, Informational, April 1998.
[7] Y. R. Yang and S. S. Lam, “General AIMD Congestion Control,” Technical Report TR-2000-09, May 9, 2000; Proceedings ICNP 2000, Osaka, Japan, November 2000.
[8] D. Bansal and H. Balakrishnan, “Binomial Congestion Control Algorithms,” In Proceedings INFOCOM 2001, April 2001.
[9] S. Floyd, M. Handley, J. Padhye, and J. Widmer, “Equationbased Congestion Control for Unicast Application,” February 2000.
[10] I. Rhee, V. Ozdemir, and Y. Yi, “TEAR: TCP Emulation at Receiver — Flow Control for Multimedia Streaming,” NCSU Technical Report, April 2000.指導教授 吳曉光(Eric Hsiao-Kuang Wu) 審核日期 2003-7-9 推文 plurk
funp
live
udn
HD
myshare
netvibes
friend
youpush
delicious
baidu
網路書籤 Google bookmarks
del.icio.us
hemidemi
myshare