Mixed-Integer Linear Programming, Constraint Programming and a Novel Dedicated Heuristic for Production Scheduling in a Packaging Plant

Author:

Oujana Soukaina12,Amodeo Lionel2,Yalaoui Farouk2,Brodart David1

Affiliation:

1. Brodart SAS, 1 Rue du Stand, 10700 Arcis-sur-Aube, France

2. Laboratory of Computer Science and Digital Society (LIST3N), University of Technology of Troyes, 12 Rue Marie Curie, CS42060, 10004 Troyes Cedex, France

Abstract

In this paper, we are discussing a research project aiming to optimize the scheduling of production orders within a real application in the packaging field. As a first approach, we model the problem as an extended version of the hybrid and flexible flowshop scheduling problem with precedence constraints, parallel machines, and sequence-dependent setups. The optimization objective considered is the minimization of the total tardiness. To tackle this problem, we use two methodologies: mixed-integer linear programming (MILP) and constraint programming (CP). These two models were further extended by adding resource calendar constraints named also availability constraints; this implies that the tasks should be scheduled only when the machine is available. The different proposed models were compared to each other on a set of generated benchmarks that reflect the specific properties of the industrial partner. Finally, as the studied configuration relies on practical real-world application, where thousands of orders are produced monthly, a novel dedicated heuristic was designed to address the need for quick solutions. The latter outperforms the other proposed algorithms for expected total tardiness minimization. The proposed problem can be readily modified to suit a wide range of real-world situations involving the scheduling of activities that share similar characteristics.

Funder

Association Nationale de la Recherche et de la Technologie

Publisher

MDPI AG

Subject

Fluid Flow and Transfer Processes,Computer Science Applications,Process Chemistry and Technology,General Engineering,Instrumentation,General Materials Science

Reference57 articles.

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3. Oujana, S., Yalaoui, F., and Amodeo, L. (2021, January 7–9). A Linear Programming Approach for Hybrid Flexible Flow Shop with Sequencedependent Setup Times to Minimise Total Tardiness. Proceedings of the 17th IFAC Symposium on Information Control Problems in Manufacturing (INCOM 2021), Budapest, Hungary.

4. Oujana, S., Amodeo, L., Yalaoui, F., and Brodart, D. (2022, January 17–20). Solving a Realistic Hybrid and Flexible Flow Shop Scheduling Problem through Constraint Programming: Industrial Case in a Packaging Company. Proceedings of the 2022 8th International Conference on Control, Decision and Information Technologies (CoDIT), Istanbul, Turkey.

5. Hybrid Flexible Flowshop Problems: Models and Solution Methods;Naderi;Appl. Math. Model.,2014

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