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100吉比特以太网的系统架构与技术实现 被引量:1

System frame and technical realization for 100 gigabit ethernet
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摘要 为了研制和开发100吉比特以太网,探讨了这种网络的工作原理、指标体系、传输端口类型和物理层各要素之间的关系;构建了功能模型和系统结构;提出了设计思路、技术方案和功能实现的方法并进行了分析;以此展示这种网络的概貌和发展前景。 100 Gigabit Ethernet is a new technology for next-generation Ethernet.To manufacture and exploit 100 Gigabit Ethernet,the work principles,target systems,types of transmitted port and relations among various factors about the physical layers were discussed.Function models and system structures were constructed.Design thought,technical scheme and ways of function realization were put forward and analyzed.For this reason,it brings forth general picture and developing foreground of this network.
出处 《解放军理工大学学报(自然科学版)》 EI 北大核心 2011年第5期445-448,共4页 Journal of PLA University of Science and Technology(Natural Science Edition)
基金 江苏省基础研究基金资助项目(SBK200921910)
关键词 下一代网络 以太网 体系结构 next-generation network ethernet architecture
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参考文献7

  • 1LYUBOMIRSKY I. Quadrature duobinary for high-spectral efficiency 100G transmission [J]. Journal of Lightwave Technology, 2010,28(1) :91-96.
  • 2DUELK M,GUTIERREZ-CASTREJON R. 4 X 25- Gb/s 40-km PHY at 1310 nm for 100 GbE using SOA-based preamplifier [J]. Journal of Lightwave Technology, 2008,26(12) : 1681-1689.
  • 3UMBACH A. Advanced photoreceivers for 40 and 100 Gbit/s optical communication networks [C]. San Diego:Proceedings of the SPIE - The International Society for Optical Engineering, 2008.
  • 4COLE C, ALLOUCHE D,FLENS F,et al. 100 GbE-optical LAN technologies [J]. IEEE Communications Magazine, 2007,45(12) :12-19.
  • 5NICHOLL G, GUSTLIN M, TRAININ O. A Physical coding sublayer for 100GbE [J]. IEEE Communications Magazine, 2007,45(12) : 4-10.
  • 6吴海平,敖志刚,孙小波,智军.100G比特以太网物理层标准和传输问题[J].兵工自动化,2010,29(5):57-59. 被引量:1
  • 7敖志刚.现代网络新技术[M].北京:人民邮电出版社,2009.

二级参考文献8

  • 1D'Ambrosia, Law, and Nowell, "40 Gigabit Ethernet ana 100 Gigabit Ethernet Technology Overview," Ethernet Alliance White Paper[J]. http: // www.ethernetalliance.org/images/40G_ 100G-Techoverview (2). pdf, Nov. 2008.
  • 2IEEE 802.3 CSMA/CD Interim Meeting, Knoxville, TN, USA,Sept.2006,http:l/www.ieee802.org/31hssg/public/se p06/index.html.
  • 3J.P. Turkiewicz et al. "160 Gb/s OTDM Networking using Deployed Fiber"[J]. J. of Light wave Technol. 2005,23,225-235.
  • 4K. Schuh et al. "100 Gbit/s ETDM transmission system based on electronic multiplexing transmitter and demultiplexing receiver"[J]. ECOC 2006, We3.P. 124.
  • 5R. Nagarajan et al. "Singlechip 40-channel InP rausmitter photonie integrated circuit capable of aggregate data rate of 1.6 Tbit/s"[J]. Electron. Letters, 2006, 42, 771-773.
  • 6R.H. Derksen et al "Integrated 100 Gbit/s ETDM Receiver in a Transmission Experiment over 480 km DMF"[J]. OFC, 2006, PDP37.
  • 7P.J. Winzer et al. "2000-km WDM Transmission of 10x107-Gb/s RZ-DQPSK"[J]. ECOC 2006, Th4.1.3.
  • 8C.R. Doerr et al. "Tunable optical dispersion compensation of a 107-Gb/s duobinary signal over 560-ps/nm range"[J]. ECOC 2006, Th4.5.1.

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