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以太网流量工程研究 被引量:3

Research in Traffic Engineering of Ethernet
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摘要 该文在以往流量工程研究的基础上,通过对以太网技术发展和应用的现状分析,提出了以太网流量工程的定义,并对主要的以太网流量工程技术进行了系统的分析和概括,阐述了以太网流量工程的体系结构和基本方法。 This paper first briefly introduces the traffic engineering(TE).Then it analyses the development and application of ethernet technology and proposes the definition of ethernet traffic engineering.Mean while,this paper also generalizes most of the ethernet TE technology and expounds the application of ethernet TE.
作者 刘军 雷振明
出处 《计算机工程与应用》 CSCD 北大核心 2002年第15期8-10,76,共4页 Computer Engineering and Applications
基金 国家重大自然科学基金项目资助(编号:69896240)
关键词 以太网 流量工程 网络测量 网络控制 计算机网络 IP Network,Ethernet,Traffic Engineering,Network Measurement ,Network Control
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参考文献13

  • 1[1]D Awduche,J Malcolm,J Agogbua et al. Requirements for Traffic En gineering Over MPLS[S].RFC2702,1999
  • 2[2]Kenya Takashima,Koji Nakamichi,Toshio Soumiya. Concept of IP Trafilc Engineering.draft-takashima-te-concept-00,1999
  • 3[3]Media Access Control(MAC)Parameters,Physical Layer,Medium Attachment Units,and Repeater for 100Mb/s Operation,Type 100BASE T[S].IEEE Standard 802.3u,1995
  • 4[4]Specification for 802.3 Full Duplex Operation[S].IEEE Standard 802.3x,1997
  • 5[5]Media Access Control ( MAC )Parameters, Physical Layer, Reperter and Management Parameters for 1000Mb/s Operation[S].Draft Standard IEEE 802.3z, 1998
  • 6[6]A Bierman,K Jones. Physical Topology MIB[S].RFC 2922,2000
  • 7[7]E Decker,P Langille,A Rijsinghani et al.Definitions of Managed Ob jects for Bridges[S].RFC1493,1993
  • 8[8]Seifert Rich.The Use of Backpressure for Congestion Control in Half Duplex CSMA/CD LANs[J].Networks and Communications Consulting, 1996
  • 9[9]Specification for 802.3 Full Duplex Operation[S].IEEE Standard 802.3x,1997
  • 10[10]Traffic class expediting and dynamic multicast filtering[S].IEEE Standard 802.1p

同被引文献27

  • 1McKEOWN N,ANDERSON T,BALAKRISHNAN H,et al.Open-Flow:enabling innovation in campus networks[J].ACM SIGCOMM Computer Communication Review,2008,38(2):69-75.
  • 2Nick Feamster,Jennifer Rexford,Ellen Zegura.The Road to SDN:An Intellectural History of Programmable Networks[J].Queue-Large-Scale Implementations.2013,11(12):1-13.
  • 3Sushant Jain,Alok Kumar,Subhasree Mandal,et al.B4:experience with a globally-deployed software defined wan[C].Proceeding of the ACM SIGCOMM 2013 conference on SIGCOMM.2013,43(4):3-14.
  • 4Wetherall,Guttag,John.ANTS:a toolkit for building and dynamically deploying network protocols[J].Open Architectures and Network Programming.1998,3(4):117-129.
  • 5Tennenhouse,Smith,Sincoskie.A survey of active network research[J].IEEE Communications Magazine.1997,35(1):80-86.
  • 6RFC 3746,Forwarding and Control Element Separation (ForCES)[S],IETF,2004.
  • 7RFC 3549,Linux Netlink as an ISP Services Protocol[S],IETF,2003.
  • 8N.Feamster,H.Balakrishnan,J.Rexford.The Case for Separating Routing from Routers[C].Proceeding of the ACM SIGCOMM workshop on Future directions in network architecture.2004:5-12.
  • 9T.V.Lakshman,T.Nandagopal,R.Ramjee,et al.The SoftRouter Architecture[C].Proceeding of the 3rd ACM Workshop on Hot Topics in Networks.2004:1-6.
  • 10RFC 4655,A Path Computation Element(PCE)-Based Architecture[S],IETF,2006.

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