• DocumentCode
    30829
  • Title

    Archon: A Function Programmable Optical Interconnect Architecture for Transparent Intra and Inter Data Center SDM/TDM/WDM Networking

  • Author

    Shuangyi Yan ; Hugues-Salas, Emilio ; Rancano, Victor J. F. ; Yi Shu ; Saridis, George M. ; Rofoee, Bijan Rahimzadeh ; Yan Yan ; Peters, Adaranijo ; Jain, Saurabh ; May-Smith, Timothy ; Petropoulos, Periklis ; Richardson, David J. ; Zervas, Georgios ; Sim

  • Author_Institution
    High Performance Networks Group, Univ. of Bristol, Bristol, UK
  • Volume
    33
  • Issue
    8
  • fYear
    2015
  • fDate
    April15, 15 2015
  • Firstpage
    1586
  • Lastpage
    1595
  • Abstract
    This paper reports all-optical, function programmable, transparent, intra- and inter-data center networking (DCN) using space and time-division multiplexing (SDM/TDM) within data centers and wavelength division multiplexing (WDM) between data centers. A multielement fiber is used for SDM transmission to provide a large quantity of optical links between the top-of-racks (ToRs) and the function programmable cluster switch. Beam-steering large-port-count fiber switches, used as central cluster switches and intercluster switch, provide a single hop optical circuit switching solution, and also enable network function programmability for DCN to support variable traffic patterns and different network functions. A TDM switch as a plug-in function provides intra-cluster communication with variable capacity and low latency. The flat-structured intra data center architecture, with a circuit-switched SDM and TDM hybrid network enables scalable, large-capacity and low-latency DCN communication. In addition, all-optical ToR-to-ToR inter-DCN is realized through metro/core networks. A highly-nonlinear fiber based all-optical SDM-to-WDM converter transfers three SDM signals to three-carrier spectral superchannel signals, which are transmitted to the destination DCN, through the metro/core networks. The all-optical ToR-ToR cross-DCN connections enable the geographically distributed DCNs to appear as one Big Data center.
  • Keywords
    Big Data; beam steering; computer centres; internetworking; optical fibre networks; optical interconnections; space division multiplexing; time division multiplexing; wavelength division multiplexing; Archon; Big Data center; SDM networking; TDM networking; ToR; ToR-ToR cross-DCN connection; WDM networking; beam steering large-port-count fiber switch; carrier spectral superchannel signal; central cluster switch; function programmable cluster switch; function programmable optical interconnect architecture; intercluster switch; large-capacity DCN communication; low-latency DCN communication; metro-core network; multielement fiber; optical SDM-to-WDM converter; optical links; single hop optical circuit switching solution; space division multiplexing; time division multiplexing; top-of-racks; transparent interdata center; transparent intradata center network; wavelength division multiplexing; Bandwidth; Optical fiber networks; Optical fibers; Optical switches; Optical transmitters; Time division multiplexing; Data CenterNetworking; Data center networking; Optical Interconnects; Space Division Multiplexing; Time Division Multiplexing; optical Interconnects; space division multiplexing; time division multiplexing;
  • fLanguage
    English
  • Journal_Title
    Lightwave Technology, Journal of
  • Publisher
    ieee
  • ISSN
    0733-8724
  • Type

    jour

  • DOI
    10.1109/JLT.2015.2392554
  • Filename
    7017479