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Programmation Linéaire en Nombres Entiers×Branch and Bound×
DomaineSimulationOptimisation
FamilleProcess / pipelineProcess / pipeline
Année d'origine1958–19601960
Auteur d'origineRalph Gomory (branch-and-bound cuts, 1958); Land & Doig (branch-and-bound, 1960)Ailsa Land & Alison Doig
TypeMathematical optimizationExact combinatorial optimization algorithm
Source fondatriceNemhauser, G. L., Wolsey, L. A. (1988). Integer and Combinatorial Optimization. Wiley-Interscience, New York. ISBN: 9780471359432Land, A. H., & Doig, A. G. (1960). An automatic method of solving discrete programming problems. Econometrica, 28(3), 497–520. DOI ↗
AliasMIP, Mixed-Integer Linear Programming, MILP, Integer ProgrammingB&B, Land-Doig Algorithm, Implicit Enumeration, Dal ve Sınır
Apparentées63
RésuméMixed-Integer Programming (MIP) is a mathematical optimization framework in which some decision variables must take integer values while others may be continuous. It generalizes linear programming and is widely used in operations research, logistics, scheduling, resource allocation, and engineering design, where indivisibility constraints — such as yes/no decisions or whole-unit quantities — arise naturally.Branch and Bound is a systematic exact algorithm for combinatorial and integer optimization problems, introduced by Ailsa Land and Alison Doig in 1960. It organizes the search space as a tree of subproblems, uses relaxation-derived upper bounds to prune branches that cannot improve the best known solution, and guarantees finding a globally optimal integer solution. It is the backbone of modern mixed-integer programming solvers used in operations research, logistics, scheduling, and engineering design.
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ScholarGateComparer des méthodes: Mixed-Integer Programming · Branch and Bound. Consulté le 2026-06-15 sur https://scholargate.app/fr/compare