• DocumentCode
    1453017
  • Title

    Optimizing Backup Optical-Network-Units Selection and Backup Fibers Deployment in Survivable Hybrid Wireless-Optical Broadband Access Networks

  • Author

    Liu, Yejun ; Guo, Lei ; Wei, Xuetao

  • Author_Institution
    Coll. of Inf. Sci. & Eng., Northeastern Univ., Shenyang, China
  • Volume
    30
  • Issue
    10
  • fYear
    2012
  • fDate
    5/15/2012 12:00:00 AM
  • Firstpage
    1509
  • Lastpage
    1523
  • Abstract
    Survivability is one of the key issues in hybrid wireless-optical broadband access networks (WOBAN) since the single segment failure can cause huge data loss. The single segment failure refers to a scenario where all optical-network-units (ONUs) are disconnected with the optical line terminal (OLT). Previous schemes focus on protecting WOBAN against single segment failure by deploying backup fibers. However, previous schemes suffer from two key problems. First, they ignore optimizing the selection of backup ONUs, which determines the cost of recovering the traffic interrupted by the failure. Second, they underutilize the residual capacity of segments, thus requiring higher backup fibers cost. In this paper, we propose a new and efficient scheme, called Optimizing Backup ONUs selection and backup Fibers deployment (OBOF), to enhance the survivability of WOBAN against the single segment failure. Our OBOF is composed of two consecutive steps, backup ONUs selection and backup fibers deployment. In the first step, aiming to minimize the cost of recovering the traffic interrupted by the failure, the simulated annealing (SA) algorithm is customized to optimize the selection of backup ONUs. In the second step, most importantly, an enhanced greedy cost-efficiency (EGCE) algorithm is proposed to optimize the deployment of backup fibers. Our EGCE consists of a novel remote backup segment (RBS) method, which can efficiently utilize the residual capacity of the segments, and a Bound on Length of Backup-optical-path (BLB) method, which limits the increase in recovery time induced by RBS. Extensive experimental results demonstrate that our OBOF scheme outperforms the previous schemes significantly, especially in the scenario of higher traffic demand.
  • Keywords
    broadband networks; greedy algorithms; optical fibre communication; simulated annealing; telecommunication traffic; bound on length of backup-optical-path method; enhanced greedy cost-efficiency algorithm; optical line terminal; optimizing backup optical-network-units selection and backup fibers deployment; remote backup segment method; residual capacity; simulated annealing; single segment failure; survivable hybrid wireless-optical broadband access networks; traffic demand; traffic interrupted failure; Algorithm design and analysis; Optical fibers; Optical network units; Passive optical networks; Wireless communication; Backup fiber; backup optical-network-units (ONU); survivability; wireless-optical broadband access network (WOBAN);
  • fLanguage
    English
  • Journal_Title
    Lightwave Technology, Journal of
  • Publisher
    ieee
  • ISSN
    0733-8724
  • Type

    jour

  • DOI
    10.1109/JLT.2012.2188498
  • Filename
    6155579