interdiction;
maximum flow;
Lagrangian relaxation;
cut enumeration;
D O I:
10.1287/ijoc.1060.0191
中图分类号:
TP39 [计算机的应用];
学科分类号:
081203 ;
0835 ;
摘要:
We describe a new algorithm for computing the efficient frontier of the "bi-objective maximum-flow network-interdiction problem." In this problem, an "interdictor" seeks to interdict (destroy) a set of arcs in a capacitated network that are Pareto-optimal with respect to two objectives, minimizing total interdiction cost and minimizing maximum flow. The algorithm identifies these solutions through a sequence of single-objective problems solved using Lagrangian relaxation and a specialized branch-and-bound algorithm. The Lagrangian problems are simply max-flow min-cut problems, while the branch-and-bound procedure partially enumerates s-t cuts. Computational tests reveal the new algorithm to be one to two orders of magnitude faster than an algorithm that replaces the specialized branch-and-bound algorithm with a standard integer-programming solver.
机构:
Uuniv Technol Troyes, Charles Delaunary Inst, Ind Syst Optimizat Lab, F-1004 Troyes, France
Uuniv Technol Troyes, UMR CNRS 6281, F-1004 Troyes, FranceUuniv Technol Troyes, Charles Delaunary Inst, Ind Syst Optimizat Lab, F-1004 Troyes, France
Mamaghani, Elham Jelodari
Davari, Soheil
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机构:
Univ Hertfordshire, Hertfordshire Business Sch, Hatfield AL10 9AB, Herts, EnglandUuniv Technol Troyes, Charles Delaunary Inst, Ind Syst Optimizat Lab, F-1004 Troyes, France