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A publicação pode ser exportada nos seguintes formatos: referência da APA (American Psychological Association), referência do IEEE (Institute of Electrical and Electronics Engineers), BibTeX e RIS.

Exportar Referência (APA)
Cortinhal, M. J., Lopes, M. J. & Melo, M. T. (2019). A multi-stage supply chain network design problem with in-house production and partial product outsourcing. Applied Mathematical Modelling. 70, 572-594
Exportar Referência (IEEE)
M. J. Cortinhal et al.,  "A multi-stage supply chain network design problem with in-house production and partial product outsourcing", in Applied Mathematical Modelling, vol. 70, pp. 572-594, 2019
Exportar BibTeX
@article{cortinhal2019_1734889805222,
	author = "Cortinhal, M. J. and Lopes, M. J. and Melo, M. T.",
	title = "A multi-stage supply chain network design problem with in-house production and partial product outsourcing",
	journal = "Applied Mathematical Modelling",
	year = "2019",
	volume = "70",
	number = "",
	doi = "10.1016/j.apm.2019.01.046",
	pages = "572-594",
	url = "https://www.sciencedirect.com/science/article/pii/S0307904X19300769?via%3Dihub"
}
Exportar RIS
TY  - JOUR
TI  - A multi-stage supply chain network design problem with in-house production and partial product outsourcing
T2  - Applied Mathematical Modelling
VL  - 70
AU  - Cortinhal, M. J.
AU  - Lopes, M. J.
AU  - Melo, M. T.
PY  - 2019
SP  - 572-594
SN  - 0307-904X
DO  - 10.1016/j.apm.2019.01.046
UR  - https://www.sciencedirect.com/science/article/pii/S0307904X19300769?via%3Dihub
AB  - We propose a mixed-integer linear programming model for a novel multi-stage supply chain network design problem. Our model integrates location and capacity choices for plants and warehouses with supplier and transportation mode selection, and the distribution of multiple products through the network. The aim is to identify the network configuration with the least total cost subject to side constraints related to resource availability, technological conditions, and customer service level requirements. In addition to in-house manufacturing, end products may also be purchased from external sources and consolidated in warehouses. Therefore, our model identifies the best mix between in-house production and product outsourcing. To measure the impact of this strategy, we further present two additional formulations for alternative network design approaches that do not include partial product outsourcing. Several classes of valid inequalities tailored to the problems at hand are also proposed. We test our models on randomly generated instances and analyze the trade-offs achieved by integrating partial outsourcing into the design of a supply chain network against a pure in-house manufacturing strategy, and the extent to which it may not be economically attractive to provide full demand coverage.
ER  -