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2017 | OriginalPaper | Chapter

Allied Closed-Loop Supply Chain Network Optimization with Interactive Fuzzy Programming Approach

Authors : Ahmet Çalık, Nimet Yapıcı Pehlivan, Turan Paksoy, İsmail Karaoğlan

Published in: Sustainable Logistics and Transportation

Publisher: Springer International Publishing

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Abstract

The concept of closed-loop supply chain (CLSC) has started to attract growing attention due to the consumer pressures, environmental awareness, and legislations. Managers in many companies have realized that a well-designed supply chain (SC) can improve the companies’ performance in the market. Thus, a lot of companies start to focus on CLSC issues including remanufacturing, refurbishing, recycling, and disposal of end-of-life products. The body of literature on CLSC management has been overwhelmingly dominated by noncooperative studies. In order to fill up this gap in the literature, we deal with an allied SC network in cooperative environment. With the implementation of allied SCs, companies not only maximize their profit but also minimize their various costs and become more flexible and efficient in the market. Following this motivation, we develop a decentralized multilevel CLSC model for allied SCs. At the first decision level, the plants in allied SCs are considered as the upper-level DMs of the Stackelberg game. At the second level, raw material suppliers, common suppliers, assembly centers, and common collection centers are considered as the lower-level DMs of the Stackelberg game. In order to tackle each decision-maker (DM)’s unique objectives, we propose a new fuzzy analytic hierarchy process (AHP)-based interactive fuzzy programming (IFP) approach. In the IFP approach, upper-level DMs determine the minimum satisfactory level for their own objectives, and by using this value, the lower DMs evaluate their own satisfactory level. A compromise solution can be derived until termination conditions are satisfied. The primary aim of this study is to design a decentralized CLSC network in cooperative environment and to propose a novel IFP approach. Finally, a numerical example is implemented and analyzed in order to demonstrate the efficiency of the proposed approach.

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Literature
1.
go back to reference Rice, J.B., Hoppe. R.M.: Supply chain vs. supply chain. Supply chain management review September/October (2001) Rice, J.B., Hoppe. R.M.: Supply chain vs. supply chain. Supply chain management review September/October (2001)
2.
go back to reference Monczka, R.M., Petersen, K.J., Handfield, R.B., Ragatz, G.L.: Success factors in strategic supplier alliances: the buying company perspective. Decis Sci. 29(3), 553–577 (1998)CrossRef Monczka, R.M., Petersen, K.J., Handfield, R.B., Ragatz, G.L.: Success factors in strategic supplier alliances: the buying company perspective. Decis Sci. 29(3), 553–577 (1998)CrossRef
3.
go back to reference Farahani, R.Z., Rezapour, S., Drezner, T., Fallah, S.: Competitive supply chain network design: an overview of classifications, models, solution techniques and applications. Omega. 45, 92–118 (2014)CrossRef Farahani, R.Z., Rezapour, S., Drezner, T., Fallah, S.: Competitive supply chain network design: an overview of classifications, models, solution techniques and applications. Omega. 45, 92–118 (2014)CrossRef
4.
go back to reference Rezapour, S., Farahani, R.Z., Fahimnia, B., Govindan, K., Mansouri, Y.: Competitive closed-loop supply chain network design with price-dependent demands. J Clean Prod. 93, 251–272 (2015)CrossRef Rezapour, S., Farahani, R.Z., Fahimnia, B., Govindan, K., Mansouri, Y.: Competitive closed-loop supply chain network design with price-dependent demands. J Clean Prod. 93, 251–272 (2015)CrossRef
5.
go back to reference Rezapour, S., Zanjirani Farahani, R., Drezner, T.: Strategic design of competing supply chain networks for inelastic demand. J Oper Res Soc. 62(10), 1784–1795 (2011)CrossRef Rezapour, S., Zanjirani Farahani, R., Drezner, T.: Strategic design of competing supply chain networks for inelastic demand. J Oper Res Soc. 62(10), 1784–1795 (2011)CrossRef
6.
go back to reference Ondemir, O., Gupta, S.M.: A multi-criteria decision making model for advanced repair-to-order and disassembly-to-order system. Eur J Oper Res. 233(2), 408–419 (2014)CrossRefMATH Ondemir, O., Gupta, S.M.: A multi-criteria decision making model for advanced repair-to-order and disassembly-to-order system. Eur J Oper Res. 233(2), 408–419 (2014)CrossRefMATH
8.
go back to reference IBM: Product recycling programs. Vol 2016 (2016) IBM: Product recycling programs. Vol 2016 (2016)
9.
go back to reference Salema, M.I.G., Barbosa-Povoa, A.P., Novais, A.Q.: An optimization model for the design of a capacitated multi-product reverse logistics network with uncertainty. Eur J Oper Res. 179(3), 1063–1077 (2007)CrossRefMATH Salema, M.I.G., Barbosa-Povoa, A.P., Novais, A.Q.: An optimization model for the design of a capacitated multi-product reverse logistics network with uncertainty. Eur J Oper Res. 179(3), 1063–1077 (2007)CrossRefMATH
10.
go back to reference Vidovic, M., Dimitrijevic, B., Ratkovic, B., Simic, V.: A novel covering approach to positioning ELV collection points. Resources, Conservation and Recycling. 57, 1–9 (2011)CrossRefMATH Vidovic, M., Dimitrijevic, B., Ratkovic, B., Simic, V.: A novel covering approach to positioning ELV collection points. Resources, Conservation and Recycling. 57, 1–9 (2011)CrossRefMATH
11.
go back to reference Zarandi, M.H.F., Sisakht, A.H., Davari, S.: Design of a closed-loop supply chain (CLSC) model using an interactive fuzzy goal programming. Int J Adv Manuf Technol. 56(5), 809–821 (2011)CrossRef Zarandi, M.H.F., Sisakht, A.H., Davari, S.: Design of a closed-loop supply chain (CLSC) model using an interactive fuzzy goal programming. Int J Adv Manuf Technol. 56(5), 809–821 (2011)CrossRef
12.
go back to reference Gupta, A., Evans, G.W.: A goal programming model for the operation of closed-loop supply chains. Eng Optim. 41(8), 713–735 (2009)CrossRef Gupta, A., Evans, G.W.: A goal programming model for the operation of closed-loop supply chains. Eng Optim. 41(8), 713–735 (2009)CrossRef
13.
go back to reference Kannan, D., Diabat, A., Alrefaei, M., Govindan, K., Yong, G.: A carbon footprint based reverse logistics network design model. Resour Conserv Recycl. 67, 75–79 (2012)CrossRef Kannan, D., Diabat, A., Alrefaei, M., Govindan, K., Yong, G.: A carbon footprint based reverse logistics network design model. Resour Conserv Recycl. 67, 75–79 (2012)CrossRef
14.
go back to reference Kannan, G., Sasikumar, P., Devika, K.: A genetic algorithm approach for solving a closed loop supply chain model: a case of battery recycling. Appl Math Model. 34(3), 655–670 (2010)MathSciNetCrossRefMATH Kannan, G., Sasikumar, P., Devika, K.: A genetic algorithm approach for solving a closed loop supply chain model: a case of battery recycling. Appl Math Model. 34(3), 655–670 (2010)MathSciNetCrossRefMATH
15.
go back to reference Özceylan, E., Paksoy, T.: A mixed integer programming model for a closed-loop supply-chain network. Int J Prod Res. 51(3), 718–734 (2013)CrossRef Özceylan, E., Paksoy, T.: A mixed integer programming model for a closed-loop supply-chain network. Int J Prod Res. 51(3), 718–734 (2013)CrossRef
16.
go back to reference Pishvaee, M.S., Torabi, S.A.: A possibilistic programming approach for closed-loop supply chain network design under uncertainty. Fuzzy Sets Syst. 161(20), 2668–2683 (2010)MathSciNetCrossRefMATH Pishvaee, M.S., Torabi, S.A.: A possibilistic programming approach for closed-loop supply chain network design under uncertainty. Fuzzy Sets Syst. 161(20), 2668–2683 (2010)MathSciNetCrossRefMATH
17.
go back to reference Kaya, O.: Incentive and production decisions for remanufacturing operations. Eur J Oper Res. 201(2), 442–453 (2010)CrossRefMATH Kaya, O.: Incentive and production decisions for remanufacturing operations. Eur J Oper Res. 201(2), 442–453 (2010)CrossRefMATH
18.
go back to reference Mitra, S., Webster, S.: Competition in remanufacturing and the effects of government subsidies. Int J Prod Econ. 111(2), 287–298 (2008)CrossRef Mitra, S., Webster, S.: Competition in remanufacturing and the effects of government subsidies. Int J Prod Econ. 111(2), 287–298 (2008)CrossRef
19.
go back to reference Subramanian, R., Ferguson, M.E., Beril Toktay, L.: Remanufacturing and the Component Commonality Decision. Prod Oper Manag. 22(1), 36–53 (2013)CrossRef Subramanian, R., Ferguson, M.E., Beril Toktay, L.: Remanufacturing and the Component Commonality Decision. Prod Oper Manag. 22(1), 36–53 (2013)CrossRef
20.
go back to reference Pan, F., Nagi, R.: Multi-echelon supply chain network design in agile manufacturing. Omega. 41(6), 969–983 (2013)CrossRef Pan, F., Nagi, R.: Multi-echelon supply chain network design in agile manufacturing. Omega. 41(6), 969–983 (2013)CrossRef
21.
go back to reference Omri, A.E.: Cooperation in supply chains: alliance formation and profit allocation among independent firms. Ecole Centrale Paris, Paris (2009) Omri, A.E.: Cooperation in supply chains: alliance formation and profit allocation among independent firms. Ecole Centrale Paris, Paris (2009)
22.
go back to reference Sakawa, M., Nishizaki, I., Uemura, Y.: Interactive fuzzy programming for multilevel linear programming problems. Comp & Math Appls. 36(2), 71–86 (1998)MathSciNetCrossRefMATH Sakawa, M., Nishizaki, I., Uemura, Y.: Interactive fuzzy programming for multilevel linear programming problems. Comp & Math Appls. 36(2), 71–86 (1998)MathSciNetCrossRefMATH
23.
go back to reference Sakawa, M., Nishizaki, I., Uemura, Y.: Interactive fuzzy programming for multi-level linear programming problems with fuzzy parameters. Fuzzy Sets Syst. 109(1), 3–19 (2000)MathSciNetCrossRefMATH Sakawa, M., Nishizaki, I., Uemura, Y.: Interactive fuzzy programming for multi-level linear programming problems with fuzzy parameters. Fuzzy Sets Syst. 109(1), 3–19 (2000)MathSciNetCrossRefMATH
24.
go back to reference Sakawa, M., Nishizaki, I.: Cooperative and noncooperative multi-level programming. Springer, New York (2009) Sakawa, M., Nishizaki, I.: Cooperative and noncooperative multi-level programming. Springer, New York (2009)
25.
go back to reference Govindan, K., Soleimani, H., Kannan, D.: Reverse logistics and closed-loop supply chain: a comprehensive review to explore the future. Eur J Oper Res. 240(3), 603–626 (2015)MathSciNetCrossRefMATH Govindan, K., Soleimani, H., Kannan, D.: Reverse logistics and closed-loop supply chain: a comprehensive review to explore the future. Eur J Oper Res. 240(3), 603–626 (2015)MathSciNetCrossRefMATH
26.
go back to reference Fahimnia, B., Sarkis, J., Davarzani, H.: Green supply chain management: a review and bibliometric analysis. Int J Prod Econ. 162, 101–114 (2015)CrossRef Fahimnia, B., Sarkis, J., Davarzani, H.: Green supply chain management: a review and bibliometric analysis. Int J Prod Econ. 162, 101–114 (2015)CrossRef
27.
go back to reference Pishvaee, M.S., Rabbani, M., Torabi, S.A.: A robust optimization approach to closed-loop supply chain network design under uncertainty. Appl Math Model. 35(2), 637–649 (2011)MathSciNetCrossRefMATH Pishvaee, M.S., Rabbani, M., Torabi, S.A.: A robust optimization approach to closed-loop supply chain network design under uncertainty. Appl Math Model. 35(2), 637–649 (2011)MathSciNetCrossRefMATH
28.
go back to reference Pishvaee, M.S., Razmi, J.: Environmental supply chain network design using multi-objective fuzzy mathematical programming. Appl Math Model. 36(8), 3433–3446 (2012)MathSciNetCrossRefMATH Pishvaee, M.S., Razmi, J.: Environmental supply chain network design using multi-objective fuzzy mathematical programming. Appl Math Model. 36(8), 3433–3446 (2012)MathSciNetCrossRefMATH
29.
go back to reference Jiménez, M., Arenas, M., Bilbao, A., Rodrı’guez, M.V.: Linear programming with fuzzy parameters: An interactive method resolution. Eur J Oper Res. 177(3), 1599–1609 (2007)MathSciNetCrossRefMATH Jiménez, M., Arenas, M., Bilbao, A., Rodrı’guez, M.V.: Linear programming with fuzzy parameters: An interactive method resolution. Eur J Oper Res. 177(3), 1599–1609 (2007)MathSciNetCrossRefMATH
30.
go back to reference Fallah, H., Eskandari, H., Pishvaee, M.S.: Competitive closed-loop supply chain network design under uncertainty. Journal of Manufacturing Systems 37. Part. 3, 649–661 (2015) Fallah, H., Eskandari, H., Pishvaee, M.S.: Competitive closed-loop supply chain network design under uncertainty. Journal of Manufacturing Systems 37. Part. 3, 649–661 (2015)
31.
go back to reference Toksari, M.D., Bilim, Y.: Interactive Fuzzy Goal Programming Based on Jacobian Matrix to Solve Decentralized Bi-level Multi-objective Fractional Programming Problems. International Journal of Fuzzy Systems. 17(4), 499–508 (2015)MathSciNetCrossRef Toksari, M.D., Bilim, Y.: Interactive Fuzzy Goal Programming Based on Jacobian Matrix to Solve Decentralized Bi-level Multi-objective Fractional Programming Problems. International Journal of Fuzzy Systems. 17(4), 499–508 (2015)MathSciNetCrossRef
32.
go back to reference Subulan, K., Taşan, A.S., Baykasoğlu, A.: Designing an environmentally conscious tire closed-loop supply chain network with multiple recovery options using interactive fuzzy goal programming. Appl Math Model. 39(9), 2661–2702 (2015)MathSciNetCrossRef Subulan, K., Taşan, A.S., Baykasoğlu, A.: Designing an environmentally conscious tire closed-loop supply chain network with multiple recovery options using interactive fuzzy goal programming. Appl Math Model. 39(9), 2661–2702 (2015)MathSciNetCrossRef
33.
34.
go back to reference Li, X.-q., Zhang, B., Li, H.: Computing efficient solutions to fuzzy multiple objective linear programming problems. Fuzzy Sets Syst. 157(10), 1328–1332 (2006)MathSciNetCrossRefMATH Li, X.-q., Zhang, B., Li, H.: Computing efficient solutions to fuzzy multiple objective linear programming problems. Fuzzy Sets Syst. 157(10), 1328–1332 (2006)MathSciNetCrossRefMATH
35.
go back to reference Guua, S.-M., Y-K, W.: Two-phase approach for solving the fuzzy linear programming problems. Fuzzy Sets Syst. 107(2), 191–195 (1999)MathSciNetCrossRef Guua, S.-M., Y-K, W.: Two-phase approach for solving the fuzzy linear programming problems. Fuzzy Sets Syst. 107(2), 191–195 (1999)MathSciNetCrossRef
36.
go back to reference Ahlatcioglu, M., Tiryaki, F.: Interactive fuzzy programming for decentralized two-level linear fractional programming (DTLLFP) problems. Omega. 35(4), 432–450 (2007)CrossRef Ahlatcioglu, M., Tiryaki, F.: Interactive fuzzy programming for decentralized two-level linear fractional programming (DTLLFP) problems. Omega. 35(4), 432–450 (2007)CrossRef
37.
go back to reference Selim, H., Ozkarahan, I.: A supply chain distribution network design model: An interactive fuzzy goal programming-based solution approach. Int J Adv Manuf Technol. 36(3), 401–418 (2008)CrossRef Selim, H., Ozkarahan, I.: A supply chain distribution network design model: An interactive fuzzy goal programming-based solution approach. Int J Adv Manuf Technol. 36(3), 401–418 (2008)CrossRef
38.
go back to reference Torabi, S.A., Hassini, E.: An interactive possibilistic programming approach for multiple objective supply chain master planning. Fuzzy Sets Syst. 159(2), 193–214 (2008)MathSciNetCrossRefMATH Torabi, S.A., Hassini, E.: An interactive possibilistic programming approach for multiple objective supply chain master planning. Fuzzy Sets Syst. 159(2), 193–214 (2008)MathSciNetCrossRefMATH
39.
go back to reference Özceylan, E., Paksoy, T.: Interactive fuzzy programming approaches to the strategic and tactical planning of a closed-loop supply chain under uncertainty. Int J Prod Res. 52(8), 2363–2387 (2014)CrossRef Özceylan, E., Paksoy, T.: Interactive fuzzy programming approaches to the strategic and tactical planning of a closed-loop supply chain under uncertainty. Int J Prod Res. 52(8), 2363–2387 (2014)CrossRef
40.
go back to reference Shimizu, K., Ishizuka, Y., Bard, J.F.: Nondifferentiable and Two-Level Mathematical Programming. Springer, Boston (1997)CrossRefMATH Shimizu, K., Ishizuka, Y., Bard, J.F.: Nondifferentiable and Two-Level Mathematical Programming. Springer, Boston (1997)CrossRefMATH
Metadata
Title
Allied Closed-Loop Supply Chain Network Optimization with Interactive Fuzzy Programming Approach
Authors
Ahmet Çalık
Nimet Yapıcı Pehlivan
Turan Paksoy
İsmail Karaoğlan
Copyright Year
2017
DOI
https://doi.org/10.1007/978-3-319-69215-9_10

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