A stochastic closed-loop supply chain network design problem with multiple recovery options

被引:40
作者
Jerbia, Rim [1 ]
Boujelben, Mouna Kchaou [2 ]
Sehli, Mohamed Amine [1 ]
Jemai, Zied [1 ,3 ]
机构
[1] OASIS ENIT Univ Tunis El Manar, Tunis, Tunisia
[2] UAE Univ, Coll Business & Econ, POB 15551, Al Ain, U Arab Emirates
[3] Univ Paris Saclay, Cent Supelec, LGI, Chatenay Malabry, France
关键词
Closed loop supply chain network design; Reverse logistics; Facility location; MILP; Two-stage stochastic program; REVERSE LOGISTICS; FACILITY LOCATION; PRODUCT-RECOVERY; MODEL; UNCERTAINTY; QUALITY;
D O I
10.1016/j.cie.2018.02.011
中图分类号
TP39 [计算机的应用];
学科分类号
081203 ; 0835 ;
摘要
In 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 computational results show that the solution of the stochastic problem is stable over different replications and that the benefit from using stochastic modeling increases when the penalty over non collected returns increases.
引用
收藏
页码:23 / 32
页数:10
相关论文
共 24 条
[1]   Network Design for Reverse and Closed-Loop Supply Chains: An Annotated Bibliography of Models and Solution Approaches [J].
Akcali, E. ;
Cetinkaya, S. ;
Uester, H. .
NETWORKS, 2009, 53 (03) :231-248
[2]   Multi-period reverse logistics network design [J].
Alumur, Sibel A. ;
Nickel, Stefan ;
Saldanha-da-Gama, Francisco ;
Verter, Vedat .
EUROPEAN JOURNAL OF OPERATIONAL RESEARCH, 2012, 220 (01) :67-78
[3]   A proposed mathematical model for closed-loop network configuration based on product life cycle [J].
Amin, Saman Hassanzadeh ;
Zhang, Guoqing .
INTERNATIONAL JOURNAL OF ADVANCED MANUFACTURING TECHNOLOGY, 2012, 58 (5-8) :791-801
[4]   A stochastic programming approach for designing supply loops [J].
Chouinard, Marc ;
D'Amours, Sophie ;
Ait-Kadi, Daoud .
INTERNATIONAL JOURNAL OF PRODUCTION ECONOMICS, 2008, 113 (02) :657-677
[5]   A stochastic model for forward-reverse logistics network design under risk [J].
El-Sayed, M. ;
Afia, N. ;
El-Kharbotly, A. .
COMPUTERS & INDUSTRIAL ENGINEERING, 2010, 58 (03) :423-431
[6]  
Fleischmann M, 2001, PROD OPER MANAG, V10, P156
[7]   Quantitative models for reverse logistics: A review [J].
Fleischmann, M ;
BloemhofRuwaard, JM ;
Dekker, R ;
vanderLaan, E ;
vanNunen, JAEE ;
VanWassenhove, LN .
EUROPEAN JOURNAL OF OPERATIONAL RESEARCH, 1997, 103 (01) :1-17
[8]   Reverse logistics and closed-loop supply chain: A comprehensive review to explore the future [J].
Govindan, Kannan ;
Soleimani, Hamed ;
Kannan, Devika .
EUROPEAN JOURNAL OF OPERATIONAL RESEARCH, 2015, 240 (03) :603-626
[9]   Concurrent product and closed-loop supply chain design with an application to refrigerators [J].
Krikke, H ;
Bloemhof-Ruwaard, J ;
Van Wassenhove, LN .
INTERNATIONAL JOURNAL OF PRODUCTION RESEARCH, 2003, 41 (16) :3689-3719
[10]   The design of sustainable logistics network under uncertainty [J].
Lee, Der-Horng ;
Dong, Meng ;
Bian, Wen .
INTERNATIONAL JOURNAL OF PRODUCTION ECONOMICS, 2010, 128 (01) :159-166