DocumentCode :
2734106
Title :
Approximating the single source unsplittable min-cost flow problem
Author :
Skutella, Martin
Author_Institution :
Fachbereich Math., Tech. Univ. Berlin, Germany
fYear :
2000
fDate :
2000
Firstpage :
136
Lastpage :
145
Abstract :
In the single source unsplittable min-cost flow problem, commodities must be routed simultaneously from a common source vertex to certain destination vertices in a given graph with edge capacities and costs; the demand of each commodity must be routed along a single path and the total cost must not exceed a given budget. This problem has been introduced by J.M. Kleinberg (1996) and generalizes several NP-complete problems from various areas in combinatorial optimization such as packing, partitioning, scheduling load balancing, and virtual-circuit routing. S.G. Kolliopoulos and C. Stein (2000) and Y.N. Dinitz et al. (1999) developed algorithms improving the first approximation results of Kleinberg for the problem to minimize the violation of edge capacities and for other variants. However, none of the developed techniques is capable of providing solutions without also violating the cost constraint. We give the first approximation results with hard cost constraints. Moreover all our results dominate the best known bicriteria approximations. Finally, we provide results on the hardness of approximation for several variants of the problem
Keywords :
computational complexity; optimisation; processor scheduling; resource allocation; NP-complete problems; bicriteria approximations; combinatorial optimization; common source vertex; destination vertices; edge capacities; hard cost constraints; hardness; load balancing; packing; partitioning; single source unsplittable min-cost flow problem; virtual-circuit routing; Approximation algorithms; Cost function; Load management; NP-complete problem; Partitioning algorithms; Routing;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Foundations of Computer Science, 2000. Proceedings. 41st Annual Symposium on
Conference_Location :
Redondo Beach, CA
ISSN :
0272-5428
Print_ISBN :
0-7695-0850-2
Type :
conf
DOI :
10.1109/SFCS.2000.892073
Filename :
892073
Link To Document :
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