Use este identificador para citar ou linkar para este item: http://repositorio.ufc.br/handle/riufc/71595
Tipo: Artigo de Periódico
Título: The integrated cutting and packing heterogeneous precast beams multiperiod production planning problem
Autor(es): Araújo, Kennedy Anderson Guimarães de
Bonates, Tibérius de Oliveira e
Prata, Bruno de Athayde
Palavras-chave: Precast beams - Modular construction;Integer linear programming;Metaheuristics;Vigas pré-moldadas - Construção modular;Programação linear inteira
Data do documento: 2021
Instituição/Editor/Publicador: RAIRO - Operations Research
Citação: ARAÚJO, Kennedy Anderson Gumarães de; BONATES, Tibérius de Oliveira e; PRATA, Bruno de Athayde. The integrated cutting and packing heterogeneous precast beams multiperiod production planning problem. RAIRO - Operations Research, [s.l], v. 55, n. 4, p. 2491–2524, 2021.
Abstract: We introduce a novel variant of cutting production planning problems named Integrated Cutting and Packing Heterogeneous Precast Beams Multiperiod Production Planning (ICP-HPBMPP). We propose an integer linear programming model for the ICP-HPBMPP, as well as a lower bound for its optimal objective function value, which is empirically shown to be closer to the optimal solution value than the bound obtained from the linear relaxation of the model. We also propose a genetic algorithm approach for the ICP-HPBMPP as an alternative solution method. We discuss computational experiments and propose a parameterization for the genetic algorithm using D-optimal experimental design. We observe good performance of the exact approach when solving small-sized instances, although there are difficulties in finding optimal solutions for medium and large-sized problems, or even in finding feasible solutions for large instances. On the other hand, the genetic algorithm is shown to typically find good-quality solutions for large-sized instances within short computing times.
URI: http://www.repositorio.ufc.br/handle/riufc/71595
ISSN: 2804-7303
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