DocumentCode :
401303
Title :
Diverse routing for shared protection in survivable optical networks
Author :
Ho, Pin-Han ; Tapolcai, Janos ; Mouftah, Hussein T.
Author_Institution :
Waterloo Univ., Ont., Canada
Volume :
5
fYear :
2003
fDate :
1-5 Dec. 2003
Firstpage :
2519
Abstract :
This paper provides a suite of approaches to solving the survivable routing problem with shared protection. The problem diverse solving the least-cost working and protection path-pair (in terms of the sum of the cost) is formulated into integer linear programming. We also introduce two heuristic algorithms, called iterative two-step-approach (ITSA) and maximum likelihood relaxation (MLR), which aim to finding the approximating optimal solution within a limited amount of computation time. We examine the performance of the proposed schemes and make a comparison with some reported counterparts. It is observed that the ITSA scheme with a properly defined tolerance to the optimality can achieve the best performance at the expense of much longer computation time. MLR can provide an ultra-fast path selection process, which behaves as a good tradeoff between computation efficiency and performance.
Keywords :
integer programming; iterative methods; linear programming; maximum likelihood estimation; optical fibre networks; telecommunication network reliability; telecommunication network routing; diverse routing; heuristic algorithm; integer linear programming; iterative two-step-approach; least-cost working; maximum likelihood relaxation; path selection process; protection path-pair; shared protection; survivable optical network; Costs; Heuristic algorithms; Integer linear programming; Intelligent networks; Iterative algorithms; Next generation networking; Optical fiber networks; Protection; Routing; Wavelength division multiplexing;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Global Telecommunications Conference, 2003. GLOBECOM '03. IEEE
Print_ISBN :
0-7803-7974-8
Type :
conf
DOI :
10.1109/GLOCOM.2003.1258691
Filename :
1258691
Link To Document :
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