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Algorytm Push-Relabel×Algorytm Bellmana-Forda×Algorytm Forda-Fulkersona×
DziedzinaBadania operacyjneBadania operacyjneBadania operacyjne
RodzinaMachine learningMachine learningMachine learning
Rok powstania198819561956
TwórcaAndrew V. Goldberg and Robert E. TarjanRichard Bellman and Lester R. FordLester R. Ford and Delbert R. Fulkerson
Typalgorithmalgorithmalgorithm
Źródło pierwotneGoldberg, A. V., & Tarjan, R. E. (1988). A new approach to the maximum flow problem. Journal of the ACM, 35(4), 921-940. DOI ↗Bellman, R. (1958). On a routing problem. Quarterly of Applied Mathematics, 16(1), 87-90. DOI ↗Ford, L. R., & Fulkerson, D. R. (1956). Maximal flow through a network. Canadian Journal of Mathematics, 8(3), 399-404. DOI ↗
Inne nazwypreflow-push algorithm, Goldberg-Tarjan algorithmBellman-Ford method, Bellman algorithmFord-Fulkerson method, augmenting path method
Pokrewne334
PodsumowanieThe Push-Relabel Algorithm, developed by Andrew V. Goldberg and Robert E. Tarjan in 1988, is a highly efficient method for computing maximum flow in networks. Unlike augmenting path methods, it maintains a preflow and uses local push and global relabeling operations to drive flow toward the sink, achieving superior worst-case complexity.The Bellman-Ford Algorithm, developed by Richard Bellman and Lester R. Ford in the 1950s, is a fundamental algorithm for computing shortest paths in weighted graphs that may contain negative edge weights. Unlike Dijkstra's algorithm, it correctly handles negative weights and can detect the presence of negative-weight cycles.The Ford-Fulkerson Algorithm, developed by Lester R. Ford and Delbert R. Fulkerson in 1956, is a foundational method for computing the maximum flow in a flow network. It finds the maximum amount of flow that can be sent from a source to a sink through a directed graph with capacity constraints on edges.
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ScholarGatePorównaj metody: Push-Relabel Algorithm · Bellman-Ford Algorithm · Ford-Fulkerson Algorithm. Pobrano 2026-06-15 z https://scholargate.app/pl/compare