期刊文献+

TCP/IP拥塞控制机制在MPLS网络中的改进及分析 被引量:2

The Improvement and Analysis to TCP/IP Congestion Control Mechanism in MPLS
下载PDF
导出
摘要 结合 MPL S的网络特点 ,提出了一种适合 MPL S网络的主动式流量和拥塞控制机制 ,在网络边缘节点引入拥塞反馈处理 .实验证明 ,与传统的 TCP协议相比 ,该机制将流量和拥塞控制从用户端点扩展到 MPL S边缘路由器 ,能够更及时地检测与控制网络拥塞 ,缩短了控制时延 ,可以进行较精确的流量调节 ,实现了提高吞吐量和改善缓冲区利用率的目的 . The improvement to conventional TCP/IP congestion mechanism in MPLS is proposed, in which endpoint congestion control algorithms are moved into network. The simulation shows that with the new mechanism, congestion can be inspected and controlled in time, round-trip delay is reduced and ingress traffic is edited. Thus total throughput and utility of buffer are improved.
出处 《北京邮电大学学报》 EI CAS CSCD 北大核心 2002年第2期93-97,共5页 Journal of Beijing University of Posts and Telecommunications
基金 国家"8 6 3计划"资助项目 (86 3- 317- 96 0 1- 0 2 ) Intel IXA大学计划资助项目
关键词 TCP/IP拥塞控制机制 MPLS网络 通信协议 congestion control mechanism MPLS bandwidth-delay product edge intelligence
  • 相关文献

参考文献6

  • 1[1]Jacobson V.Congestion avoidance and control [A].Proc.SIGCOMM Symposium on Communication Architectures and Protocols,ACM SIGCOMM Stanford [C].CA,Aug,1988.314-329.
  • 2[2]Jacobson V.Modified TCP congestion avoidance algorithm [Z].mailing list,April 30,1990.
  • 3[3]RFC2582 Apr-1999,Floyd S.ACIRI Henderson T.The newReno modification to TCP's fast recovery algorithm [S].
  • 4[4]Floyd S.ISSues of TCP with SACK [EB/OL].Technical report,URL ftp:∥ftp.ee.ibl.gov/papers/issues sa.ps.1996-03.
  • 5[5]Jacoboson V.Congestion avoidance and control[A].Proc.SIGCOMM Symposium on Communications Architectures and Protocols[C].ACM SIGCOMM,Standford,CA.Aug.1988.314-329.
  • 6[6]Bolot J C,Shankar A.Dynamical behavior of rate based flow control systems[J].Comp.Commun.Rev.,ACM SIGCOMM,April 1996,26(2):5-18.

同被引文献15

  • 1AndrewSTanenbaum 熊桂喜 王小虎.计算机网络[M].北京:清华大学出版社,2002..
  • 2Steven H Low, et al. lntemet Congestion Control [ J]. IEEE Control Systems Magazine,2002,22( 1 ) :28-43.
  • 3Pere Vila, Josep L Marzo, Liuis Fabrega. Using a Multi-Agent System for Network Management [ EB/OL]. http://eia. udg. es/~ atm/bcds/pdf/ccia_2002_v02. pdf, 1999.
  • 4Hakim Laichour, Salah Maouche, Rene Mandiau. Traffic Control Assistance in Connection Nodes:Multi-Agent Application in Urban Transport Systems[ C]. Intelligent Data Acquisition and Advanced Computing Systems: Technology and Applications, International Workshop on, 2001. 133-137.
  • 5Hollot C V, Misra V, Towsley D, et al. On designing improved controllers for AQM routers supporting TCP flows[ A]. Proceeding IEEE Conference on Computer Communications[C]. 2001. 1726-1734.
  • 6Floyd S, Jacobson V. Random early detection gateways for congestion avoidance [J ]. IEEE/ACM Transactions on Networking, 1993, 1: 397-413.
  • 7Zhang Honggang, Hollot C V, Towsley D, et al. A selftuning structure for adaptation in TCP/AQM networks[A]. Proceeding ACM/SIGMETRICS[C]. 2003. 302-303.
  • 8Chen Qiang, Yang O W W. A ST-PI-PP controller for AQM router[J]. Communlcations, 2004 IEEE International Conference, 2004, 4: 20-24.
  • 9Zhang M, Wu J, Lin C, et al. Rethink the tradeoff between proportional controller and PI controller [A]. Proceeding IEEE ISCC 2002[C]. 2002. 57-62.
  • 10Wang Chonggang, Bo Li, Kazem Sohraby. API: adaptive proportional-lntegral algorithm for active queue management under dynamic environments [A]. Proceeding IEEE HPSR 2004[C]. 2004. 51-55.

引证文献2

二级引证文献4

相关作者

内容加载中请稍等...

相关机构

内容加载中请稍等...

相关主题

内容加载中请稍等...

浏览历史

内容加载中请稍等...
;
使用帮助 返回顶部