期刊文献+

支持OTDM的多粒度光交换结构研究 被引量:2

Architecture of OTDM-enabled Multi-granularity Optical Switching
在线阅读 下载PDF
导出
摘要 多粒度光交换能减小光交叉连接矩阵的规模,降低光节点的成本,然而现有多粒度光交换结构的最小交换粒度常为波长,该交换粒度太大,会导致核心节点的链路利用率低。在多层MG-OXC基础上,提出了一种新型多粒度交换结构,实现了波带交换和OTDM的结合。该新型MG-OXC结构端口较少,并且可以提高传输速率,同时也因此降低了同等信息量下波长的使用数量,为网络提供了更大的传输容量,能够很好地适应光网络发展的需要。 Multi-granularity optical switching can reduce the size of optical cross connect and the cost of optical nodes. However, its smallest switching granularity, often the wavelength, is too big for some traffic, and this would induce the low link utilization. Based on the architecture of multi-granularity optical switching, this paper propose a novel MG-OXC architecture combining WBS and OTDM. The novel MG-OXC architecture has fewer ports, could improve the transmission speed of the networks and use less number of wavelengths in the same case of information traffic, and it can provide much larger transmission capacity too. Thus, it can meet the development requirement of optical networks.
作者 余明辉 何顺
出处 《广东通信技术》 2008年第4期29-31,41,共4页 Guangdong Communication Technology
关键词 多粒度光交换 波带 光时分复用 multi-granularity optical switching: waveband optical time division multiplexing
  • 相关文献

参考文献6

  • 1LINGAMPALLI R, VENGALAM P. LINGAMPALLI R, VENGALAM P. Effect of wavelength and waveb and grooming on all-optical networks with single layer photonic switching[ C].Proceedings-OFC.2002:ThP4.
  • 2CAO Xiaojun, ANAND V, QIAO C M. A waveband switching architecture and algorithm for dynamic traffic[J]. IEEE Communications Letters, 2003,7(8):397-399
  • 3Pin-Han H, Mouftah H T, Wu J. A scalable design of multigranularity optical cross-connects for the next- generation optical internet[J]. IEEE Journal on Selected Areas in Communications, 2003, 21 (7):1133-1142
  • 4黄胜,隆克平,阳小龙,陈前斌,李培江.支持突发粒度的多粒度光交换结构研究[J].重庆邮电大学学报(自然科学版),2007,19(1):66-69. 被引量:3
  • 5刘涛,赵尚弘,谢小平,夏贵进,占生宝.OTDM实用化关键技术分析[J].电讯技术,2002,42(4):91-94. 被引量:1
  • 6丁新鲜,王荣.超高速OTDM系统的关键技术及应用前景[J].光子技术,2005(4):238-240. 被引量:2

二级参考文献11

  • 1[1]S.Kawanishi et al.,Electron Lett.,Vol.32,470,1996.
  • 2[2]M.Nakazawa et al.,ECOC'2000,PD2.6.
  • 3[3]T.Morika et al.,Electron Lett.,Vol.32,No.10,906,1996.
  • 4[4]S.W.Seo et al.,IEEE J.onSelected Area in Commun.,Vol.14,No.5,999,1996.
  • 5[6]Li Yuhua, et al.IEEE Photonics Technology Lett[J].,Vol.10,No.9,1998:1250.
  • 6[1]NOIRIE L,VIGOUREUX M,DOTARO E.Impact of intermediate traffic grouping on the dimensioning of multi-granularity optical networks[EB/OL].(2001-0220)[2006-11-12].http://ieeexplore.ieee.org/xpls/abs-all.jsp? arnumber= 927315.
  • 7[2]XIONG Y,VANDERHOUTE M,CANKAYA H C.Control architecture in optical burst-switched WDM networks[J].IEEE Journal on Selected Areas in Communications,2000,18(10):1838-1851.
  • 8[3]LINGAMPALL I R,VEGALAM P.Effect of wave length and waveband grooming on all-optical networks with single layer photonic switching[EB/OL].(2002-04-17)[2006-11-12].http://scholar.goodle.com/scholar? h1 = 2h-CN&newwindow = 1&q = cache:Qcqiopkoj10J.
  • 9[4]CAO Xiaojun,ANAND Vishal,QIAO Chunming.A waveband switching architecture and algorithm for dynamic traffic[J].IEEE Communications Letters,2003,7(8):397 399.
  • 10[5]HO Pin-Han,HUSSEIN T.Routing and wavelength assignment with multigranularity traffic in optical networks[J].Journal of Lightwave Technology,2002,20(8):1292-1303.

共引文献3

同被引文献10

  • 1CAO Xiaojun, Anand V, QIAO Chunming. Framework for Waveband Switching in Multigranular Optical Networks Part II-wavelength Waveband Conversion and Survivability[J]. Journal of Optical Networking, 200?, 6(01):48-62.
  • 2CAO Xiaojun, Anand V, QIAO Chunming. Framework for Waveband Switching in Multigranular Optical Networks Part II wavelength Waveband Conversion and Survivability[J]. Journal of Optical Networking, 2007,6(01):48-62.
  • 3CAO Xiaojun, ANAND Vishal, QIAO Chunming. Multi-layer Versus Single Layer Optical Cross Connect Architectures for Waveband Switching[J]. IEEE INFOCOM, 2004,11(03):1830 -1840.
  • 4CAO Xiaojun, Anand V, QIAO Chunming. Waveband Switching for Dynamic Traffic Demands in Multigranular Optical Networks [J]. IEEE/ACM Transactions on Networking, 2007, 10(15):957-968.
  • 5BANERJEE A,PARK Y,CLARKE F,et al.Wavelength-Division-Multiplexed Passive Optical Network(WDM-PON)Technologies for Broadband Access:A Review[Invited][J].Journal of Optical Networking,2005,4(11):737-758.
  • 6CAO X J,ANAND V,QIAO C M.Multi-layer Versus Single Layer Optical Cross Connect Architectures for Waveband Switching[J].IEEE INFOCOM,2004,11(03):1830-1840.
  • 7GRASA E,FIGUEROLA S,SAVOIE M.Articulated Private Networks in UCLP[J].Internet Research:Electronic Networking Applications and Policy,2007,17(05):535-545.
  • 8刘玉贵,刘云.全光网通信的实现[J].通信技术,2008,41(10):174-176. 被引量:14
  • 9易丛琴.下一代接入网技术WDM-OCDMA-PON的研究[J].通信技术,2009,42(6):124-126. 被引量:5
  • 10单玉洁,王辉.基于分层图的动态RWA算法的仿真与实现[J].通信技术,2009,42(12):147-149. 被引量:1

引证文献2

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