期刊文献+

100G比特以太网物理层标准和传输问题 被引量:1

100 Gigabit Ethernet Physics Standards and Transmission
下载PDF
导出
摘要 为了获得超高宽带以太网的支持,介绍IEEE802.3ba工作组对100G比特以太网制定的标准,叙述应对高带宽需求发展的高速传输光纤技术,分析网络信号调制方式及其优缺点,讨论100G比特以太网信号传输的解决方法。 In order to obtain the support of Ethernet ultra-broadband,introduce the 100 Gigabit Ethernet standard instituted by IEEE802.3ba working group,and describes the response to the development of high-bandwidth needs of high-speed fiber technology.The network signal modulation formats and their advantages and disadvantages are analyzed while solutions to transmit 100 Gigabit Ethernet signals are discussed.
出处 《兵工自动化》 2010年第5期57-59,共3页 Ordnance Industry Automation
基金 下一代高速以太网物理层体系架构与实现技术研究(SBK200921910)
关键词 100G比特以太网 标准 带宽 数据速率 调制方式 100 Gigabit Ethernet Standards Bandwidth Data rate Modulation fashion
  • 相关文献

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.

同被引文献6

  • 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敖志刚.现代网络新技术[M].北京:人民邮电出版社,2009.

引证文献1

二级引证文献1

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