Title of article :
A Bi-objective Mathematical Model for Closed-loop Supply Chain Network Design Problem
Author/Authors :
Boronoos, Mehdi School of Industrial Engineering - College of Engineering - University of Tehran, Tehran, Iran , Torabi, Ali School of Industrial Engineering - College of Engineering - University of Tehran, Tehran, Iran , Mousazadeh, Mohammad School of Industrial Engineering - College of Engineering - University of Tehran, Tehran, Iran
Abstract :
In this paper, a bi-objective mixed-integer linear optimization model for Closed-loop Supply Chain
Network Design Problem (CLSCND) is developed. The proposed model includes both the forward and
reverse directions and includes different types of facilities, namely, manufacturing/remanufacturing centers,
warehouses, and disassembly centers. The first objective function tried to minimize the total cost of the supply
chain, while the second one was aimed at maximizing the responsiveness of the network in both forward and
reverse directions, simultaneously. To solve the proposed bi-objective model, an augmented ε-constraint
method was implemented by which a set of Pareto-optimal solutions for the problem were generated. An
illustrative numerical example is given in the study to show the applicability and efficiency of the presented
optimization model.
Keywords :
Augmented ε-constraint , Responsiveness , Multi-objective optimization , Integrated forward/reverse supply chain
Journal title :
Astroparticle Physics