Title :
Multi-staged network restoration from massive failures considering transition risks
Author :
Kamamura, Shohei ; Shimazaki, Daisaku ; Uematsu, Yutaka ; Genda, Kouichi ; Sasayama, Koji
Author_Institution :
NTT Network Service Syst. Labs., NTT Corp., Musashino, Japan
Abstract :
In a scenario of restoration from massive failures, a network is repaired through multiple restoration stages because availability of repair resources is limited. In a practical case, a network operator should assure the reachability of important traffic in transient stages, even as risks and/or operational overheads caused by stage transitions are suppressed. We discuss the novel problem of optimizing both traffic recovery ratio and transition risks caused by paths switching operation. We formulate our problem as linear programming, and show that it obtains Pareto-optimal solutions of traffic recovery versus transition risks. We also propose a heuristic algorithm for applying networks consisting of a few hundred nodes, and it could produce sub-optimal solutions within 4% difference from optimal solutions.
Keywords :
Pareto optimisation; linear programming; telecommunication switching; Pareto-optimal solutions; heuristic algorithm; linear programming; massive failures; multistaged network restoration; operational overheads; path switching; transition risks; Availability; IP networks; Linear programming; Optimization; Routing; Switches; Transient analysis; Linear Programming; Massive Failures; Multiple Stages; Network Restoration; Pareto-Optimization;
Conference_Titel :
Communications (ICC), 2014 IEEE International Conference on
Conference_Location :
Sydney, NSW
DOI :
10.1109/ICC.2014.6883502