A Strong Integer Programming Formulation for Hybrid Flowshop Scheduling

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Date

2019

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Publisher

Taylor & Francis

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Green Open Access

No

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Abstract

We consider a hybrid flowshop scheduling problem that includes parallel unrelated discrete machines or batch processing machines in different stages of a production system. The problem is motivated by a bottleneck process within the production system of a transformer producer located in the Netherlands. We develop an integer programming model that minimises the total tardiness of jobs over a finite planning horizon. Our model is applicable to a wide range of production systems organised as hybrid flowshops. We strengthen our integer program by exploiting the special properties of some constraints in our formulation. We develop a decision support system (DSS) based on our proposed optimisation model. We compare the results of our initial optimisation model with an improved formulation as well as with a heuristic that was in use at the company before the implementation of our DSS. Our results show that the improved optimisation model significantly outperforms the heuristic and the initial optimisation model in terms of both the solution time and the strength of its linear programming relaxation.

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Keywords

Co-bipartite chain graph, Integer programming, Interval graph, maximal clique, Decision support system, Hybrid flowshop scheduling, Conflict graph

Turkish CoHE Thesis Center URL

Fields of Science

0211 other engineering and technologies, 02 engineering and technology

Citation

Ünal, A. T., Ağralı, S., & Taşkın, Z. C. (September 09, 2019). A strong integer programming formulation for hybrid flowshop scheduling. Journal of the Operational Research Society, 1-11.

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Q2

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Q1
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OpenCitations Citation Count
5

Source

Journal of the Operational Research Society

Volume

71

Issue

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1

End Page

11
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Scopus : 6

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Mendeley Readers : 18

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