• DocumentCode
    927283
  • Title

    Hybrid Link/Path-Based Design for Translucent Photonic Network Dimensioning

  • Author

    Shinomiya, Norihiko ; Hoshida, Takeshi ; Akiyama, Yuichi ; Nakashima, Hisao ; Terahara, Takafumi

  • Author_Institution
    Soka Univ., Tokyo
  • Volume
    25
  • Issue
    10
  • fYear
    2007
  • Firstpage
    2931
  • Lastpage
    2941
  • Abstract
    The advancement of ultralong-haul transmission technology has dramatically enhanced the all-optical reaches. However, the actual situations of installed fiber and sites for terrestrial network often prevent implementing a purely transparent network, and thus, opaque reshaping retiming regenerating (3R) regeneration is required to guarantee optical signal reachability. Since 3R regenerators based on optical/electrical/optical conversion tend to dominate the total network costs, an efficient network design method that allocates a minimum number of 3R regenerators to optimum locations is essential to build a cost-effective photonic network. In this paper, we propose such a network-dimensioning method by combining the advantages of link-based and path-based design approaches. It first guarantees optical signal reachability for any possible traffic demand in each segmented linear link. After combining all the links, excessive regenerators are eliminated based on the optical signal quality check with -factor calculation for each wavelength path. A trial design of a large-scale mesh network demonstrated a significant cost savings of more than 30% in comparison with a conventional link-based design. In the trial, the impact of fiber loss coefficient over the total network cost was investigated quantitatively, addressing the importance of such quantitative modeling and analysis.
  • Keywords
    optical fibre networks; optical signal detection; photonic switching systems; wavelength division multiplexing; fiber loss coefficient; hybrid link/path based design; large scale mesh network; optical signal quality check; optical signal reachability; quantitative modeling; regenerators; segmented linear link; traffic demand; translucent photonic network dimensioning; Costs; Fiber nonlinear optics; Large-scale systems; Nonlinear optics; Optical fiber devices; Optical fiber networks; Optical fiber polarization; Repeaters; Telecommunication traffic; Wavelength division multiplexing; Equipment cost minimization; network design; reshaping retiming regenerating (3R) regenerator; wavelength-division multiplexing (WDM);
  • fLanguage
    English
  • Journal_Title
    Lightwave Technology, Journal of
  • Publisher
    ieee
  • ISSN
    0733-8724
  • Type

    jour

  • DOI
    10.1109/JLT.2007.905224
  • Filename
    4346634