Integrating sustainable performance into supply chain design and planning models: A literature review

被引:0
作者
Boukherroub T. [1 ]
Ruiz A. [1 ,2 ]
Fondrevelle J. [3 ]
Guinet A. [3 ]
Ouhimmou M. [4 ]
机构
[1] Centre Interuniversitaire de Recherche sur les Réseaux d'Entreprise, Logistique et le Transport (CIRRELT), Université Laval, 2325, rue de la Terrasse, Québec, G1 V 0A6, QC
[2] Faculté des sciences de l'administration, Pavilion Palasis-Prince, Université Laval, 2325, rue de la Terrasse, Québec, G1 V 0A6, QC
[3] Laboratoire DISP (Decision et Information pour les Systèmes de Production), INSA-Lyon, 21 avenue Jean Capelle, Villeurbanne Cedex
[4] Département de la production autornatisée, Ecole de Technologie Supérieure (ETS), Montréal, H3C 1K3, QC
来源
Journal Europeen des Systemes Automatises | 2016年 / 49卷 / 03期
关键词
Optimization models; Supply chain design and planning; Sustainable development; Sustainable performance;
D O I
10.3166/JESA.49.237-270
中图分类号
学科分类号
摘要
This paper presents a systematic literature review on sustainable supply chain design and planning models in the field of Operations Research (OR). The goal is to analyse to which extent economic, environmental and social aspects are integrated into mathematical models. The focus is drawn on sustainahility performance criteria considered, and the way they are formulated in the mathematical models. We also emphasize on industrial and legislative contexts where the sustainable supply chain mxlels are pmpcsed. Fllwing the literature analysis, the main conclusions and research perspectives are presented. © Lavoisier 2016.
引用
收藏
页码:237 / 270
页数:33
相关论文
共 107 条
[1]  
Abdallah T., Farhat A., Diabat A., Kennedyt S., Green supply chains with carbon trading and environmental sourcing: Formulation and life cycle assessment, Applied Mathematical Modelling, 36, pp. 4271-4285, (2012)
[2]  
Achillas C., Aidonis D., Vlachokostas Ch., Moussiopoulos N., Banias G., Triantafillou D., A multi-objective decision-making model to select waste electrical and electronic equipment transportation media, Resources, Conservation and Recycling, 66, pp. 76-84, (2012)
[3]  
Akgul O., Shah N., Papageorgiou L.G., An optimisation framework for a hybrid first/second generation bioethanol supply chain, Computers and Chemical Engineering, 42, pp. 101-114, (2012)
[4]  
Altmann M., Bogaschewsky R., An environmentally conscious robust closed-loop supply chain design, Journal of Business Economics, 84, pp. 613-637, (2014)
[5]  
Amin S.H., Zhang G., A multi-objective facility location model for closed-loop supply chain network under uncertain demand and return, Applied Mathematical Modelling, 37, 6, pp. 4165-4176, (2012)
[6]  
Amin S.H., Zhang G., An integrated model for closed-loop supply chain configuration and supplier selection: Multi-objective approach, Expert Systems with Applications, 39, pp. 6782-6791, (2012)
[7]  
Aramyan L.H., Hoste R., Van Den Broek W., Groot J., Soethoudt H., Lan T., Nguyen T., Hermansen J.E., Van Der Vorst J.G.A.J., Towards sustainable food production: A scenario study of the European pork sector, Journal on Chain and Network Science, 11, 2, pp. 177-189, (2011)
[8]  
Baud-Lavigne B., Agard B., Penz B., Environmental constraints in joint product and supply chain design optimization, Computers and Industrial Engineering, 76, pp. 16-22, (2014)
[9]  
Baumann E., Modeles D'evaluation des Performances Economique, Environnementale et Sociale dans les Chaines Logistiques, (2011)
[10]  
Bennekrouf M., Benyoucef L., Sari Z., Problemes de conception et pilotage des chaines logistiques inverses et globales : Etat de l'art, 8th International Conference of Modeling and Simulation (MOSIM'10), (2010)