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A two-stage interval-stochastic programming model for planning end-of-life vehicles allocation under uncertainty

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  • Simic, Vladimir

Abstract

The ultimate fate of vehicles can vary, including being recycled, exported, abandoned, illegally treated in unauthorized facilities, stolen and processed for parts or illegally exported, etc. Nowadays, export of used vehicles represents the most significant barrier to the more efficient vehicle recycling in the EU, because millions of vehicles (mainly from Germany, Italy, UK and France), which are expected to go to domestic vehicle recycling factories are exported. As a result, how to allocate limited and frequently insufficient quantities of collected end-of-life vehicles (ELVs) to satisfy vast demands of vehicle recycling factories becomes a significant concern of many government or private authorities that control the ELV collection and treatment networks across the EU. In this paper, a two-stage interval-stochastic programming model is developed for supporting the management of ELV allocation under uncertainty. The formulated model can directly handle uncertainties expressed as either probability density functions or discrete intervals. Moreover, it can support the analysis of various policy scenarios that are associated with different levels of economic penalties when the promised ELV allocation targets are violated. The proposed model has been applied to a hypothetical case study in which several scenarios with different ELV allocation policies were comprehensively analyzed. The obtained results indicated that reasonable solutions had been generated. There is significant influence of parameter uncertainty on model solutions and the analyzed policy scenarios. Various policies in negotiating the ELV allocation targets with vehicle recycling factories would lead to different economic and risk values. Proposed model can serve as the support for authorities to identify ELV allocation targets that will secure maximized profits and minimized disruption risks of the vehicle recycling factories. It is applicable across vehicle recycling industry that processes dozens of millions of ELVs every year.

Suggested Citation

  • Simic, Vladimir, 2015. "A two-stage interval-stochastic programming model for planning end-of-life vehicles allocation under uncertainty," Resources, Conservation & Recycling, Elsevier, vol. 98(C), pages 19-29.
  • Handle: RePEc:eee:recore:v:98:y:2015:i:c:p:19-29
    DOI: 10.1016/j.resconrec.2015.03.005
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    References listed on IDEAS

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    1. Jane E. Boon & Jacqueline A. Isaacs & Surendra M. Gupta, 2003. "End‐of‐Life Infrastructure Economics for “Clean Vehicles” in the United States," Journal of Industrial Ecology, Yale University, vol. 7(1), pages 25-45, January.
    2. Mahmoudzadeh, Mahdi & Mansour, Saeed & Karimi, Behrouz, 2013. "To develop a third-party reverse logistics network for end-of-life vehicles in Iran," Resources, Conservation & Recycling, Elsevier, vol. 78(C), pages 1-14.
    3. Huang, G. H. & Baetz, B. W. & Patry, G. G., 1995. "Grey fuzzy integer programming: An application to regional waste management planning under uncertainty," Socio-Economic Planning Sciences, Elsevier, vol. 29(1), pages 17-38, March.
    4. Qu, Xiuli & Williams, Julie Ann Stuart, 2008. "An analytical model for reverse automotive production planning and pricing," European Journal of Operational Research, Elsevier, vol. 190(3), pages 756-767, November.
    5. Gołębiewski, Bronisław & Trajer, Jędrzej & Jaros, Małgorzata & Winiczenko, Radosław, 2013. "Modelling of the location of vehicle recycling facilities: A case study in Poland," Resources, Conservation & Recycling, Elsevier, vol. 80(C), pages 10-20.
    6. Simic, Vladimir & Dimitrijevic, Branka, 2012. "Production planning for vehicle recycling factories in the EU legislative and global business environments," Resources, Conservation & Recycling, Elsevier, vol. 60(C), pages 78-88.
    7. Masoud Zarei & Saeed Mansour & Ali Husseinzadeh Kashan & Behrooz Karimi, 2010. "Designing a Reverse Logistics Network for End-of-Life Vehicles Recovery," Mathematical Problems in Engineering, Hindawi, vol. 2010, pages 1-16, March.
    8. Zorpas, Antonis A. & Inglezakis, Vassilis J., 2012. "Automotive industry challenges in meeting EU 2015 environmental standard," Technology in Society, Elsevier, vol. 34(1), pages 55-83.
    9. Huang, Guo H. & Baetz, Brian W. & Patry, Gilles G., 1995. "Grey integer programming: An application to waste management planning under uncertainty," European Journal of Operational Research, Elsevier, vol. 83(3), pages 594-620, June.
    10. Mazzanti, Massimiliano & Zoboli, Roberto, 2006. "Economic instruments and induced innovation: The European policies on end-of-life vehicles," Ecological Economics, Elsevier, vol. 58(2), pages 318-337, June.
    11. Farel, Romain & Yannou, Bernard & Ghaffari, Asma & Leroy, Yann, 2013. "A cost and benefit analysis of future end-of-life vehicle glazing recycling in France: A systematic approach," Resources, Conservation & Recycling, Elsevier, vol. 74(C), pages 54-65.
    12. Mathieux, Fabrice & Brissaud, Daniel, 2010. "End-of-life product-specific material flow analysis. Application to aluminum coming from end-of-life commercial vehicles in Europe," Resources, Conservation & Recycling, Elsevier, vol. 55(2), pages 92-105.
    13. Williams, J.A.S. & Wongweragiat, S. & Qu, X. & McGlinch, J.B. & Bonawi-tan, W. & Choi, J.K. & Schiff, J., 2007. "An automotive bulk recycling planning model," European Journal of Operational Research, Elsevier, vol. 177(2), pages 969-981, March.
    14. Simic, Vladimir & Dimitrijevic, Branka, 2013. "Risk explicit interval linear programming model for long-term planning of vehicle recycling in the EU legislative context under uncertainty," Resources, Conservation & Recycling, Elsevier, vol. 73(C), pages 197-210.
    15. Cruz-Rivera, Reynaldo & Ertel, Jürgen, 2009. "Reverse logistics network design for the collection of End-of-Life Vehicles in Mexico," European Journal of Operational Research, Elsevier, vol. 196(3), pages 930-939, August.
    16. N. Sakkas & T. Manios, 2003. "End of life vehicle management in areas of low technology sophistication. A case study in Greece," Business Strategy and the Environment, Wiley Blackwell, vol. 12(5), pages 313-325, September.
    17. Vidovic, Milorad & Dimitrijevic, Branka & Ratkovic, Branislava & Simic, Vladimir, 2011. "A novel covering approach to positioning ELV collection points," Resources, Conservation & Recycling, Elsevier, vol. 57(C), pages 1-9.
    18. Zhao, Qinghua & Chen, Ming, 2011. "A comparison of ELV recycling system in China and Japan and China's strategies," Resources, Conservation & Recycling, Elsevier, vol. 57(C), pages 15-21.
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    2. Sabaghi, Mahdi & Cai, Yongliang & Mascle, Christian & Baptiste, Pierre, 2015. "Sustainability assessment of dismantling strategies for end-of-life aircraft recycling," Resources, Conservation & Recycling, Elsevier, vol. 102(C), pages 163-169.
    3. Nakatani, Jun & Konno, Kiyoto & Moriguchi, Yuichi, 2017. "Variability-based optimal design for robust plastic recycling systems," Resources, Conservation & Recycling, Elsevier, vol. 116(C), pages 53-60.
    4. Simic, Vladimir, 2016. "End-of-life vehicles allocation management under multiple uncertainties: An interval-parameter two-stage stochastic full-infinite programming approach," Resources, Conservation & Recycling, Elsevier, vol. 114(C), pages 1-17.

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