• DocumentCode
    1371002
  • Title

    An ultrafast photonic ATM switch based on bit-interleave multiplexing

  • Author

    Tsukada, Masato ; De Zhong, Wen ; Matsunaga, Tohru ; Asobe, Masaki ; Oohara, Takahiko

  • Author_Institution
    Network Service Syst. Labs., NTT, Tokyo, Japan
  • Volume
    14
  • Issue
    9
  • fYear
    1996
  • fDate
    9/1/1996 12:00:00 AM
  • Firstpage
    1979
  • Lastpage
    1985
  • Abstract
    An optical ATM switch is proposed in which cells from individual input channels are time-division multiplexed in a bit-interleave manner. This switch can easily handle multicast switching because it is based on a broadcast-and-select network. Compared to an alternative switch that uses a cell-interleave time-division multiplexing scheme, the proposed optical switch has a much simpler structure. It does not need a cell compressor at each input and a cell expander at each output, which greatly reduces hardware complexity. Feasibility analyzes showed that a 64×64 photonic ATM switch with 2.5 Gb/s input/output is possible using the proposed technology. In an experimental demonstration, 4 b cells were selected from a 55 Gb/s bit-interleave multiplexed cell stream by using a new nonlinear optical fiber switch. With its high switch throughput, our switch is a strong candidate for future large-capacity optical switching nodes
  • Keywords
    high-speed optical techniques; nonlinear optics; optical fibre networks; photonic switching systems; time division multiplexing; 2.5 Gbit/s; 55 Gbit/s; alternative switch; bit-interleave manner; bit-interleave multiplexed cell stream; bit-interleave multiplexing; broadcast-and-select network; cell compressor; cell-interleave time-division multiplexing scheme; future large-capacity optical switching nodes; hardware complexity; high switch throughput; individual input channels; multicast switching; nonlinear optical fiber switch; optical ATM switch; optical switch; photonic ATM switch; time-division multiplexed; ultrafast photonic ATM switch; Asynchronous transfer mode; Broadcasting; Fiber nonlinear optics; Hardware; Nonlinear optics; Optical fibers; Optical switches; Photonics; Throughput; Ultrafast optics;
  • fLanguage
    English
  • Journal_Title
    Lightwave Technology, Journal of
  • Publisher
    ieee
  • ISSN
    0733-8724
  • Type

    jour

  • DOI
    10.1109/50.536965
  • Filename
    536965