• DocumentCode
    3605818
  • Title

    Passive ROADM Flexibility in Optical Access With Spectral and Spatial Reconfigurability

  • Author

    Schrenk, Bernhard ; Laudenbach, Fabian ; Lieger, Roland ; Lorunser, Thomas ; Bakopoulos, Paraskevas ; Poppe, Andreas ; Stierle, Martin ; Avramopoulos, Hercules ; Leopold, Helmut

  • Author_Institution
    Dept. of Digital Safety & Security, Austrian Inst. of Technol., Vienna, Austria
  • Volume
    33
  • Issue
    12
  • fYear
    2015
  • Firstpage
    2837
  • Lastpage
    2846
  • Abstract
    An energy-aware solution for physical-layer reconfigurability in metro-access networks is presented. The dynamicity of optical switching is introduced in nodes that are perceived as fully-passive by the network. Energy scavenging at low optical feed level of -10dBm supports field-deployment without local electrical power supply. Two types of network nodes are demonstrated experimentally. First, a resilience node is evaluated for fast protection switching in 10.7 ms at the feeder segment. Optical switching is further exploited for the purpose of dynamic allocation of spectral slices and routing in a new class of reconfigurable optical add-drop multiplexer. The spectral bandwidth of drop segments can be extended on demand while intranetwork communication among different segments of the access network is also enabled. Finally, we discuss the potential for realizing self-powering by means of tapping optical signals traversing the access network rather than utilizing a dedicated pump source.
  • Keywords
    energy harvesting; multiplexing equipment; optical fibre subscriber loops; optical switches; telecommunication power management; energy scavenging; fast protection switching; intranetwork communication; metro access network; optical access network; optical signal traversing; optical switching dynamicity; passive ROADM flexibility; reconfigurable optical add-drop multiplexer; resilience node; spatial reconfigurability; spectral reconfigurability; spectral slice dynamic allocation; Green communications; Optical buffering; Optical pumping; Optical switches; Passive optical networks; Dynamic resource allocation; Energy harvesting; Optical fiber communication; Optical fiber networks; Optical switches; Passive optical networks; Protection switching; energy harvesting; optical fiber communication; optical fiber networks; optical switches; passive optical networks; protection switching;
  • fLanguage
    English
  • Journal_Title
    Selected Areas in Communications, IEEE Journal on
  • Publisher
    ieee
  • ISSN
    0733-8716
  • Type

    jour

  • DOI
    10.1109/JSAC.2015.2478719
  • Filename
    7268840