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Volume 27 Issue 8
Aug.  2005
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Weigang LI, Jingcheng SHEN, Lu XIE, Yuntao ZHAO. Semi Supervised Learning of Metallographic Data Based on Self-organizing Incremental and Graph Convolution Neural Network[J]. Journal of Electronics & Information Technology, 2021, 43(11): 3301-3308. doi: 10.11999/JEIT201029
Citation: Xiang Bing, Yu Gong-fang, Wang Sheng, Li Le-min. A Differentiated Shared Protection Algorithm Supporting Traffic Grooming in WDM Mesh Networks[J]. Journal of Electronics & Information Technology, 2005, 27(8): 1299-1303.

A Differentiated Shared Protection Algorithm Supporting Traffic Grooming in WDM Mesh Networks

  • Received Date: 2004-03-05
  • Rev Recd Date: 2004-09-07
  • Publish Date: 2005-08-19
  • Considering both the survivability and traffic grooming, a differentiated shared protection algorithm using wavelength layered-graph called PSPTG, which means Partial Shared-path Protection algorithm supporting Traffic Grooming, is proposed. In this algorithm, a shared protection scheme of partial lightpath based on link reliability is presented to meet the requests of reliability and bandwidth of connections. Simulation results show that the algorithm is efficient in terms of resources utilization.
  • Mukherjee B. WDM optical communication networks: Progress and challenges[J].IEEE J. Select. Areas in Commun.2000, 18 (10):1810-[2]Ramamurthy S, Mukherjee B. Survivable WDM mesh networks,Part Ⅰ-Protection. in Proc. IEEE INFOCOM99, New York, NY,March 1999:744 - 751.Ramamurthy S, Mukherjee B. Survivable WDM mesh networks,Part Ⅱ-Restoration. in Proc. IEEE ICC99, Vancouver, Canada,June 1999:2023 - 2030.[3]Yuan S, Jue J P. Shared protection routing algorithm for optical networks. Optical Networks Mag., 2002, 3(3): 32 - 39.[4]Anand V, Qiao C. Static versus dynamic establishment of protection paths in WDM networks. J. of High Speed Networks(JHSN), Special issue on optical networks, 2001, 10(4): 317- 327.[5]Gerstel O, Sasaki G. Quality of Protection (QoP): A quantitative unifying paradigm to protection service grades. Optical Networks Mag., 2002, 3(3): 45 - 49.[6]Saradhi C V, Murthy C S R. Routing differentiated reliable connections in WDM optical networks. Optical Networks Mag.,2002, 3(3): 50 - 67.[7]Wang J, Vemuri V R, et al.. Improved approaches for costeffective traffic grooming in WDM ring networks: ILP formulation and single-hop and multihop connections, IEEE/OSA J[J].Lightwave Technol.2001, 19(11):1645-[8]Wan P J, Cǎlinescu G, et al.. Grooming of arbitrary traffic in SONET/WDM BLSRs[J].IEEE J. on Select. Areas in Commun.2000, 18(10):1995-[9]Modiano E, Lin P J. Traffic grooming in WDM networks. IEEE Commun. Mag., 2001, 39(7): 124 - 127.[10]Gerstel O, Ramaswami R., et al.. Cost-effictive traffic grooming in WDM rings. IEEE/ACM Trans. Networking, 2000, 8(5):618 - 630.[11]Zhu K Y, Mukherjee B. Traffic grooming in an optical WDM mesh network[J].IEEE J. on Select. Areas in Commun.2002, 20(1):122-[12]Xiang B, Wang S, Li L M A traffic grooming based on shared protection in WDM mesh networks. IEEE PDCAT, ChengDu,China, August 2003:254 - 258.[13]Thiagarajan S, Somani A K. Traffic grooming for survivable WDM mesh networks. Optical Networks Mag., 2002, 3(3): 32 -39.[14]Chen C, Banerjee S. A new model for optimal routing and wavelength assignment in wavelength division multiplexed optical networks. IEEE INFOCOM, San Francisco, April 1996:164- 171.
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