Title :
Photonic access node using optical code-based label processing and its applications to optical data networking
Author :
Kitayama, Ken-ichi ; Murata, Masayuki
Author_Institution :
Dept. of Electron. & Inf. Syst., Osaka Univ., Japan
fDate :
10/1/2001 12:00:00 AM
Abstract :
An ultrahigh-speed photonic access node using optical code-based photonic add-drop multiplexing (PADM) and its novel applications to optical data networking are proposed. PADM processes a photonic label of packet, which is mapped onto an optical code, and adds-drops the packet from or to the node, or bypasses the node. PADM is distinct from conventional wavelength ADM (WADM) in that it can handle traffic on a packet-by-packet basis. In the application of PADM to optical data networking, pseudo-time division multiple access (TDMA) and rate-controlled asynchronous access are proposed. The analyses and their numerical simulations of the performances are presented. The simulation results demonstrate low packet-loss probability. Their optical implementations are also demonstrated, in which exploit parallel photonic label processing shows the applicability of proposed optical data networking in an ultrahigh-speed regime
Keywords :
data communication; multiplexing; optical fibre subscriber loops; probability; telecommunication traffic; time division multiple access; low packet-loss probability; optical code; optical code-based label processing; optical code-based photonic add-drop multiplexing; optical data networking; optical implementations; packet-by-packet basis; parallel photonic label processing; photonic access node; photonic label; pseudo-time division multiple access; rate-controlled asynchronous access; ultrahigh-speed photonic access node; ultrahigh-speed regime; wavelength ADM; Add-drop multiplexers; Code division multiplexing; High speed optical techniques; Optical fiber networks; Optical packet switching; SONET; Telecommunication traffic; Time division multiplexing; WDM networks; Wavelength division multiplexing;
Journal_Title :
Lightwave Technology, Journal of