DocumentCode :
28472
Title :
Fast and efficient network protection method using path pre-cross-connected trails
Author :
Alazemi, H. ; Sebbah, Samir ; Nurujjaman, Mohammad
Author_Institution :
Dept. of Comput. Eng., Kuwait Univ., Safat, Kuwait
Volume :
5
Issue :
12
fYear :
2013
fDate :
Dec. 2013
Firstpage :
1343
Lastpage :
1352
Abstract :
This paper investigates design methods of protection schemes in survivable WDM networks using the path protection p-trail in order to provide better capacity efficiency by eliminating the rigidness of the protection structure of the well-accepted protection scheme, the failure independent path protection (FIPP) pre-configured protection cycle (p-cycle). The flexibility in the protection structure yields lower cost in terms of spare capacity allocation while maintaining the high speed of protection switching. We develop two design approaches, the fully pre-cross-connected path protection trail (fpp-trail) and the partially pre-cross-connected path protection trail (ppp-trail), based on the degree of pre-cross-connectivity of the protection structure. In order to obtain optimally designed trails, we develop an optimization model based on a large-scale optimization technique, namely, column generation. Numerical results show that fpp-trails significantly improve the spare capacity efficiency compared to the FIPP p-cycle, and ppp-trails strike a balance between capacity redundancy and recovery delay. We observe that ppp-trails can achieve as low capacity redundancy as shared backup path protection (SBPP), while the recovery delay is kept lower than in SBPP and slightly higher than FIPP p-cycles by using selective signaling through a control plane that is aware of the location of the cross-connects that are not pre-configured in advance.
Keywords :
delays; numerical analysis; optical design techniques; optimisation; switching networks; telecommunication network reliability; wavelength division multiplexing; FIPP pre-configured protection cycle; SBPP; capacity efficiency; capacity redundancy; column generation; control plane; failure independent path protection; fpp-trail; fully pre-cross-connected path protection trail; large-scale optimization technique; network protection method; numerical analysis; optimally designed trails; optimization model; partially pre-cross-connected path protection trail; ppp-trail; protection structure; protection switching; recovery delay; selective signaling; shared backup path protection; spare capacity allocation; survivable WDM networks; Capacity planning; Delays; Optical switches; Optimized production technology; Protection switching; Redundancy; Column generation; Optimization; Protection; Quality of recovery; Reconfigured and pre-cross-connected protection; Recovery delay; p-trails;
fLanguage :
English
Journal_Title :
Optical Communications and Networking, IEEE/OSA Journal of
Publisher :
ieee
ISSN :
1943-0620
Type :
jour
DOI :
10.1364/JOCN.5.001343
Filename :
6685599
Link To Document :
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