DocumentCode
1457691
Title
Quantifying the benefit of wavelength add-drop in WDM rings with distance-independent and dependent traffic
Author
Simmons, Jane M. ; Goldstein, Evan L. ; Saleh, Adel A M
Author_Institution
AT&T Bell Labs., Rad Bank, NJ, USA
Volume
17
Issue
1
fYear
1999
fDate
1/1/1999 12:00:00 AM
Firstpage
48
Lastpage
57
Abstract
One drawback to deploying wavelength division multiplexed (WDM) synchronous optical network (SONET) rings is the potentially large amount of equipment necessary for their deployment. Wavelength add-drop multiplexers potentially reduce the amount of required SONET terminal equipment by allowing individual wavelengths to optically bypass a node rather than being electronically terminated. We have quantified the maximum terminal-equipment savings attainable using wavelength add-drop for rings carrying uniform traffic and rings carrying distance-dependent traffic. The analysis makes use of both an enumerative methodology, and a “super-node” approximation technique that is applicable to arbitrary ring size and internode demand. In both the uniform and distance-dependent traffic scenarios, maximum terminal-equipment savings are shown to rapidly increase, over the region of interest, with both network size and internode demand. The value of wavelength add-drop is accordingly expected to grow rapidly in rings interconnecting numerous high-capacity nodes
Keywords
SONET; optical fibre networks; telecommunication traffic; wavelength division multiplexing; SONET terminal equipment; WDM SONET rings; WDM rings; distance-dependent traffic; electronically terminated; high-capacity nodes; internode demand; maximum terminal-equipment savings; optically bypass; super-node approximation; synchronous optical network; uniform traffic; wavelength add-drop; wavelength add-drop multiplexers; Add-drop multiplexers; Costs; Network topology; Optical design; Optical fiber devices; Optical fiber networks; SONET; Telecommunication traffic; WDM networks; Wavelength division multiplexing;
fLanguage
English
Journal_Title
Lightwave Technology, Journal of
Publisher
ieee
ISSN
0733-8724
Type
jour
DOI
10.1109/50.737421
Filename
737421
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