A Novel Fast Multicast Algorithm with Enhanced Survivability in WDM Optical Networks

被引:0
作者
Junjie Li
Hanyi Zhang
Bingkun Zhou
Yili Guo
机构
[1] Tsinghua University,Department of Electronic Engineering
来源
Photonic Network Communications | 2004年 / 8卷
关键词
WDM networks; multicast; routing; segment protection; survivability;
D O I
暂无
中图分类号
学科分类号
摘要
WDM optical networking technology is expected to facilitate bandwidth-intensive multicast application by establishing a “light-tree” which regards the source node as the root and all the destination nodes as the leaves. However, the existing multicast routing algorithms are time-consuming and the generated “light-trees” are very sensitive to failures, e.g., a single fiber cut can disrupt the information from transmitting to several terminals. In this paper, we propose a novel fast multicast algorithm with enhanced survivability (FMES), which applies a two-stage multicast routing approach, and employs a path protection scheme for each segment of the first stage tree. Analysis and experimental results show that FMES has the significant advantage of a much shorter running time than that in existing schemes, and this advantage can be enlarged in the distributed routing and signaling system of the coming intelligent optical networks. We also compare FMES with non-protection and full-protection schemes. It shows that the FMES scheme achieves the best trade-off between network survivability and resource-utilization. We illustrate our study with numerical experiments based on the real-life ChinaNet topology.
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页码:223 / 232
页数:9
相关论文
共 25 条
  • [1] Sahasrabuddhe L. H.(1999)Light-Trees: Optical multicasting for improved performance in wavelength-routed networks IEEE Communications Magazine 37 67-73
  • [2] Mukherjee B.(2000)Allocation of splitting nodes in all-optical wavelength-routed networks Photonic Network Communications 2 247-265
  • [3] Ali M.(2003)Optical layer multicast: Rationale, building blocks, and challenges IEEE Network 17 60-65
  • [4] Deogun J.(1998)Multicasting optical cross connects employing splitter-and-delivery switch IEEE Photonics Technology Letters 10 970-972
  • [5] Rouskas G. N.(2000)Power-efficient design of multicast wavelength-routed networks IEEE Journal on Selected Areas on Communications 18 1852-1862
  • [6] Hu W. S.(2000)Cost-effective implementation of multicasting in wavelength-routed networks IEEE/OSA Journal of Lightwave Technology 18 1628-1638
  • [7] Zeng Q. J.(2002)Multicasting in a class of multicast-capable WDM networks IEEE/OSA Journal of Lightwave Technology 20 350-359
  • [8] Ali M.(1987)Steiner problem in networks: A survey Networks 17 129-167
  • [9] Deogun J. S.(2002)Multicast routing and wavelength assignment in multihop optical networks IEEE/ACM Transctions on Networking 10 621-629
  • [10] Ali M.(1999)The advantages of partitioning multicast transmissions in a single-hop optical WDM network Photonic Network Communications 1 111-124