DocumentCode :
1534481
Title :
All-optical four-fiber bidirectional line-switched ring
Author :
Fang, Xiaojun ; Iraschko, Rainer ; Sharma, Rohit
Author_Institution :
Sprint Advanced Technol. Labs., Burlingame, CA, USA
Volume :
17
Issue :
8
fYear :
1999
fDate :
8/1/1999 12:00:00 AM
Firstpage :
1302
Lastpage :
1308
Abstract :
An all-optical four-fiber bidirectional line-switched ring (O-4F/BLSR) architecture is proposed. This new physical layer networking protocol uses wavelengths as tributaries and an optical supervisory channel to carry overhead information. Optical channels can be added and dropped from the ring, and virtual wavelength paths can be provisioned. Both node and link failures of a network can be protected through a two layer protection scheme. Protection switching within the optical multiplex section layer (OMS) restores failure caused by loss of optical continuity in a way similar to the SONET 4F/BLSR line switching. Protection switching within the optical channel layer restores single channel failure using 1:N protection. Test results show that the O-4F/BLSR can restore traffic in less than 50 ms. A self-healing, bandwidth efficient, and scalable all-optical transport network evolving from this O-4F/BLSR architecture is possible
Keywords :
optical fibre networks; telecommunication channels; telecommunication network reliability; telecommunication traffic; transport protocols; 1:N protection; O-4F/BLSR architecture; SONET 4F/BLSR line switching; all-optical four-fiber bidirectional line-switched ring; layer protection scheme; link failures; node failures; optical channels; optical continuity; optical multiplex section layer; optical supervisory channel; overhead information; physical layer networking protocol; protection switching; self-healing bandwidth efficient scalable all-optical transport network; single channel failure; telecommunication traffic restoration; virtual wavelength paths; Optical fiber cables; Optical fiber devices; Optical fiber networks; Physical layer; Protection; Protocols; SONET; Switches; Telecommunication traffic; Wavelength division multiplexing;
fLanguage :
English
Journal_Title :
Lightwave Technology, Journal of
Publisher :
ieee
ISSN :
0733-8724
Type :
jour
DOI :
10.1109/50.779150
Filename :
779150
Link To Document :
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