Title :
An evaluation of architectures incorporating wavelength division multiplexing for broad-band fiber access
Author :
Feldman, Robert D. ; Harstead, E.E. ; Jiang, S. ; Wood, Thomas H. ; Zirngibl, Martin
Author_Institution :
Lucent Technol., AT&T Bell Labs., Holmdel, NJ, USA
fDate :
9/1/1998 12:00:00 AM
Abstract :
Wavelength division multiplexing (WDM) offers the potential to transport very high bit rates in access systems serving residential and small business customers. We describe the options for WDM access systems, and evaluate them on the basis of an international standard that is emerging for passive optical networks (PONs) that use wavelength-independent power splitting. The greatest impediment to meeting the high-bandwidth potential of WDM for downstream (i.e., from the central office to the home) transmission is the need for a moderately priced multiple-wavelength light source, implementing WDM in the upstream (home to central office) direction presents greater hurdles than in the downstream. The technical aspects of overcoming these hurdles can all be met. The real challenge will be in finding technical solutions that can meet the very stringent cost requirements of access systems. Systems that use WDM in the downstream direction only, while using wavelength-independent power-combining in a PON configuration for upstream, may prove economical before full WDM systems. WDM may also prove valuable if upgrades are needed in the future for power-splitting PON´s
Keywords :
broadband networks; light sources; optical fibre subscriber loops; telecommunication standards; wavelength division multiplexing; PON configuration; WDM; WDM access systems; access systems; broad-band fiber access; central office to the home transmission; high bit rates; high-bandwidth potential; home to central office direction; international standard; moderately priced multiple-wavelength light source; passive optical networks; residential customers; small business customers; technical solutions; wavelength division multiplexing; wavelength-independent power splitting; wavelength-independent power-combining; Central office; Costs; Optical fiber communication; Optical fiber devices; Optical fiber networks; Optical fibers; Optical network units; Passive optical networks; Power generation economics; Wavelength division multiplexing;
Journal_Title :
Lightwave Technology, Journal of