International audienceIn this paper, a closed-loop supply chain network design problem with multiple recovery options is studied. First, the deterministic problem is formulated as a Mixed Integer Linear Program (MILP). A sensitivity analysis is carried out in order to investigate the impact of variations of the main input parameters such as customer return rates, revenues, costs as well as the proportions of returns assigned to each recovery option, on the network structure and the company profit. Then, a stochastic version of the model is developed to account for the high uncertainties faced by companies. A scenario-based approach is used to model the uncertainties of return rates, revenues, costs and the quality of returns. The computatio...
In this paper, a multi-period supply chain network design problem is addressed. Several aspects of p...
In this paper we address the problem of uncertainty in the design and planning of a multi-period, mu...
A stochastic programming model for designing logistics networks integrating reverse logistics into c...
International audienceIn this paper, a closed-loop supply chain network design problem with multiple...
International audienceIn this paper, a closed-loop supply chain network design problem with multiple...
International audienceIn this paper, a closed-loop supply chain network design problem with multiple...
International audience—In this paper, a closed-loop supply chain network design problem with multipl...
International audience—In this paper, a closed-loop supply chain network design problem with multipl...
International audience—In this paper, a closed-loop supply chain network design problem with multipl...
International audience—In this paper, a closed-loop supply chain network design problem with multipl...
International audience—In this paper, a closed-loop supply chain network design problem with multipl...
We consider the problem of designing a closed-loop supply chain (CLSC) network in the presence of un...
A design and planning approach is proposed for addressing general multi-period, multi-product closed...
In this paper, a multi-period supply chain network design problem is addressed. Several aspects of p...
A design and planning approach is proposed for addressing general multi-period, multi-product Closed...
In this paper, a multi-period supply chain network design problem is addressed. Several aspects of p...
In this paper we address the problem of uncertainty in the design and planning of a multi-period, mu...
A stochastic programming model for designing logistics networks integrating reverse logistics into c...
International audienceIn this paper, a closed-loop supply chain network design problem with multiple...
International audienceIn this paper, a closed-loop supply chain network design problem with multiple...
International audienceIn this paper, a closed-loop supply chain network design problem with multiple...
International audience—In this paper, a closed-loop supply chain network design problem with multipl...
International audience—In this paper, a closed-loop supply chain network design problem with multipl...
International audience—In this paper, a closed-loop supply chain network design problem with multipl...
International audience—In this paper, a closed-loop supply chain network design problem with multipl...
International audience—In this paper, a closed-loop supply chain network design problem with multipl...
We consider the problem of designing a closed-loop supply chain (CLSC) network in the presence of un...
A design and planning approach is proposed for addressing general multi-period, multi-product closed...
In this paper, a multi-period supply chain network design problem is addressed. Several aspects of p...
A design and planning approach is proposed for addressing general multi-period, multi-product Closed...
In this paper, a multi-period supply chain network design problem is addressed. Several aspects of p...
In this paper we address the problem of uncertainty in the design and planning of a multi-period, mu...
A stochastic programming model for designing logistics networks integrating reverse logistics into c...