A multi-objective integrated procurement, production, and distribution problem of supply chain network under fuzziness uncertainties

Author:

Douaioui Kaoutar1,Fri Mouhsene2,Mabrouki Charif1,Semma El Alami1

Affiliation:

1. Hassan First University of Settat, Faculty of Science and Technology, Laboratory, Engineering, Industrial Management and Innovation

2. Université Euromed de Fès, Fès, Maroc

Abstract

In this paper, we devoted a design under uncertainty of a four-echelon supply chain network including multiple suppliers, multiple plants, multiple distributors and multiple customers. The proposed model is a bi-objective mixed integer linear programming which considers several constraints and aims to minimize the total costs including the procurement, production, storage and distribution costs as well as to maximize on-time deliveries (OTD). To bring the model closer to real-world planning problems, the objective function coefficients (e.g. procurement cost, production cost, inventory holding and transport costs) and other parameters (e.g., demand, production capacity and safety stock level), are all considered triangular fuzzy numbers. Besides, a hybrid mathematical model-based on credibility approach is constructed for the problem, i.e., expected value and chance constrained models. Moreover, to build the crisp equivalent model, we use different property of the credibility measure. The resulted crisp equivalent model is a bi-objective mixed integer linear programs (BOMILP). To transform this crisp BOMILP into a single objective mixed integer linear programs (MILP) model, we apply three different aggregation functions. Finally, numerical results are reported for a real case study to demonstrate the efficiency and applicability of the proposed model.

Publisher

University of Rijeka, Faculty of Maritime Studies

Subject

Engineering (miscellaneous),Social Sciences (miscellaneous),Geography, Planning and Development,Ocean Engineering

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