Faster and simpler algorithms for multicommodity flow and other fractional packing problems
Naveen Garg, Jochen Könemann
Abstract
Naveen Garg, Jochen Könemann
Abstract
This paper considers the problem of designing fast, approximate, combinatorial algorithms for multicommodity flows and other fractional packing problems. We provide a different approach to these problems which yields faster and much simpler algorithms. Our approach also allows us to substitute shortest path computations for min-cost flow computations in computing maximum concurrent flow and min-cost multicommodity flow; this yields much faster algorithms when the number of commodities is large.
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This paper considers the problem of designing fast, approximate, combinatorial algorithms for multicommodity flows and other fractional packing problems. We provide a different approach to these problems which yields faster and much simpler algorithms. Our approach also allows us to substitute shortest path computations for min-cost flow computations in computing maximum concurrent flow and min-cost multicommodity flow; this yields much faster algorithms when the number of commodities is large.
Key concepts: Multi-commodity flow problem, Computation, Flow (mathematics), Algorithm, Mathematical optimization, Flow network, Shortest path problem, Computer science