Abstract
Supply Chain Management (SCM) problem can be simply described as if an enterprise is requested to provide adequate commodities to its customers on time, it should be able to design its own appropriate purchase/production/transportation network at the lowest-cost level in time. Modeling SCM by fuzzy mathematical programming is an innovative and a popular issue, this chapter introduces fuzzy multiple attribute decision making (FMADM) and fuzzy multiple objective programming (FMOP) for the solutions of SCM.
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References
Aburto, L., Weber, R.: Improved supply chain management based on hybrid demand forecasts. Appl. Soft Comput. 7, 136–144 (2007)
Aliev, R.A., Fazlollahi, B., Guirimov, B.G., Aliev, R.R.: Fuzzy-genetic approach to aggregate production–distribution planning in supply chain management. Inf. Sci. 177, 4241–4255 (2007)
Amid, A., Ghodsypour, S., O’Brien, C.: Fuzzy multi objective linear model for vender selection problem in a supply chain. Int. J. Prod. Econ. 104, 394–407 (2006)
Balan, S., Vrat, P., Kumar, P.: Reducing the Bullwhip effect in a supply chain with fuzzy logic approach. Int. J. Integr. Supply Manage. 3, 261–282 (2007)
Bhatnager, R., Sohal, A.: Supply chain competitiveness: measuring the impact of location factors, uncertainty and manufacturing practices. Technovation 25, 443–456 (2005)
Buyya, R., Yeo, C.S., Venugopal, S.: Market-oriented cloud computing: vision, hype, and reality for delivering it services as computing utilities. In: High Performance Computing and Communications, pp. 5–13. IEEE Press, New York (2008)
Celesti, A., Tusa, F., Villari, M., Puliafito, A.: How to enhance cloud architectures to enable cross-federation. In: IEEE 3rd International Conference on Cloud Computing, pp. 337–345. IEEE Press, New York (2010)
Charnes, A., Cooper, W.W., Rhodes, E.: Measuring efficiency of decision making unit. Eur. J. Oper. Res. 2, 429–444 (1978)
Chen, C.W., Wang, G.J., Yang, M.-Z., Chen, Y.W.: A multi-objective rfid model of transferring and tracking trauma patients after a large disaster. In: The 21st International Conference on Multiple Criteria Decision Making, http://mcdmsociety.org/conference2011/session/session82.html (2011)
Chen, C.-W., Chen, Y.W., Wang, G.-J., Lin, P.-H., Larbani, M.: A cloud service to allocate emergent patients by affinity set. In Conference of EURO, p. 145. EURO Press, Vilnius (2012)
Chen, C.-T.: A fuzzy approach to select the location of the distribution center. Fuzzy Sets Syst. 118, 65–73 (2001)
Chen, S., Chang, P.: A mathematical programming to supply chain models with fuzzy parameters. Eng. Optim. 38, 647–669 (2006)
Chen, S.-J., Hwang C.-L.: Fuzzy multiple attribute decision making: methods and applications, lecture notes in economics and mathematical systems 375, Springer, Heidelberg (1992)
Chen, Y.W.: Data envelopment analysis with fuzzy inputs and outputs. Int. J. Operations Quant. Manag. 7, 165–176 (2002)
Chen, Y.W., Larbani, M.: Two-person zero-sum game approach for fuzzy multiple attribute decision making problems. Fuzzy Sets Syst. 157, 34–51 (2006)
Chen, Y.W., Tzeng, G.H.: Fuzzy multi-objective approach to the supply chain model. In: Trzaskalik, T., Michnik, J. (eds.) Multiple Objective and Goal Programming: Advances in Soft Computing, pp. 221–234. Physica, Wurzburg (2002)
Chen, Y.W., Larbani, M., Chang, Y.-P.: Multi-objective data envelopment analysis. J. Oper. Res. Society 60, 1556–1566 (2009)
Chen, Y.W., Larbani, M., Liu, C.-H.: Simulation of a supply chain game with multiple fuzzy goals. Fuzzy Sets Syst. 161, 1489–1510 (2010)
Chen, Y.W., Wang, C.-H., Lin, S.-J.: A multi-objective geographic information system for transporting nuclear wastes. Omega 36, 363–372 (2008)
Chiang, C.I., Tzeng, G.H.: A multiple objective programming approach to data envelopment analysis. In: Shi, Y., Zeleny, M. (eds.) New Frontiers of Decision Making for the Information Technology Era, pp. 270–285. World Science Publishing Company, Singapore (2000)
Cho, D.W., Lee, Y.H., Ahna, S.H., Hwang, M.K.: A framework for measuring the performance of service supply chain management. J. Comput. Ind. Eng. 62, 801–818 (2012)
Chopra, S., Meindl, P.: Supply Chain Management. Prentice Hall, New York (2010)
Chou, S.-Y., Chang, Y.-H., Shen, C.-Y.: A fuzzy simple additive weighting system under group decision-making for facility location selection with objective/subjective attributes. Eur. J. Oper. Res. 189, 132–145 (2008)
Dobrila, P.: Simulation of supply chain behaviour and performance in an uncertain environment. Int. J. Prod. Econ. 71, 429–438 (2001)
Dobrila, P., Rajat, R., Radivoj, P.: Modelling and simulation of a supply chain in an uncertain environment. Eur. J. Oper. Res. 109, 299–309 (1998)
Fang, S.-C., Nuttle, H.L.W., King, R.E., Wilson, J.R.: soft computing for softgoods supply chain analysis and decision support. In: Pastore, C., Sztandera, L. (eds.) Soft Computing in Textile Sciences, pp. 1–15. Physica, Wurzburg (2002)
Giannaoccaro, I., Pontrandolfo, P., Scozzi, B.: A fuzzy echelon approach for inventory management. Eur. J. Oper. Res. 149, 185–196 (2003)
Golany, B.: An interactive MOLP procedure for the extension of DEA to effectiveness analysis. J. Operational Res. Soc. 39l, 725–734 (1988)
Gunasekaran, N., Rathesh, S., Arunachalam, S., Koh, S.C.L.: Optimizing supply chain management using fuzzy approach. J. Manuf. Technol. Manage. 17, 737–749 (2006)
Gupta, A., Costas, D., Conor, M., McDonald, M.: Mid-term supply chain planning under demand uncertainty: customer demand satisfaction and inventory management. Comput. Chem. Eng. 24, 2613–2621 (2000)
Harnisch, S., Buxmann, P.: Evaluating cloud services using methods of supplier selection. In: Business Information Systems: Lecture Notes in Business Information Processing, Vol. 157, pp. 1–13, Springer, Heidelberg (2013)
He, C.-H., Gao, Y.-H., Yang, S.-H., Edwards, D.W.: Optimization of the process for recovering caprolactam from wastewater in a pulsed-sieve-plate column using green design methodologies. J. Loss Prev. Process Ind. 17, 195–204 (2004)
Hoshino, T., Yura, K., Hitomi, K.: Optimization analysis for recycle-oriented manufacturing systems. Int. J. Prod. Res. 33, 2069–2078 (1995)
Hsu, C.W., Hu, A.H.: Green supply chain management in the electronic industry. Int. J. Sci. Technol. 5, 205–216 (2008)
Hua, Z., Li, S.: Impacts of demand uncertainty on retailer’s dominance and manufacturer-retailer supply chain cooperation. Omega 36, 697–714 (2008)
Huang, Z., Li, S.X.: Co-op advertising models in manufacturer-retailer supply chains: a game theory approach. Eur. J. Oper. Res. 135, 527–544 (2001)
Jamalnia, A., Soukhakian, M.: A hybrid fuzzy goal programming approach with different goal priorities to aggregate production planning. Comput. Ind. Eng. 56, 1474–1486 (2008)
Kao, C., Hung, C.T.: Data envelopment analysis with common weights: the compromise solution approach. J. Operational Res. Soc. 56, 1196–1203 (2005)
Karsak, E.E., Ahiska, S.S.: A common-weight MCDM framework for decision problems with multiple inputs and outputs. Lecture notes in computer science, Vol. 4705, pp. 779–790, Springer Heidelberg (2007)
Krikke, H.R., Bloemhof-Ruwaard, J.M., Van Wassenhove, L.N.: Concurrent product and closed-loop supply chain design with an application to refrigerators. Int. J. Prod. Res. 41, 3689–3719 (2003)
Kumar, M., Vrat, P., Shankar, R.: A fuzzy goal programming approach for vendor selection problem in a supply chain. Comput. Ind. Eng. 46, 69–85 (2004)
Li, S.X., Huang, Z., Zhu, J., Chau, P.Y.K.: Cooperative advertising, game theory and manufacturer–retailer supply chains. Omega 30, 347–357 (2002)
Li, X.-B., Reeves, G.R.: A multiple criteria approach to data envelopment analysis. Eur. J. Oper. Res. 115, 507–517 (1999)
Liang, T.: Applying fuzzy goal programming to production/transportation planning decisions in a supply chain. Int. J. Syst. Sci. 38, 293–304 (2007)
Lin, R.-J.: Using fuzzy DEMATEL to evaluate the green supply chain management practices. J. Cleaner Prod. 40, 32–39 (2013)
Lindner, M., Marquez, F.G., Chapman, C., Clayman, S., Henriksson, D., Elmroth, E.: The cloud supply chain: a framework for information, monitoring, accounting and billing. In: 2nd International ICST Conference on Cloud Computing, pp. 25–28. Barcelona, Spain (2010)
Liu, S., Kao, C.: Solving fuzzy transportation problems based on extension principal. Eur. J. Oper. Res. 153, 661–674 (2004)
Lou, S.-F., Si, Y.-W.: Fuzzy adaptive agent for supply chain management. In Proceeding of IEEE/WIC/ACM International Conference on Intelligent Agent Technology, 313–320 (2006)
Madu, C.N., Kuei, C., Madu, I.E.: A hierarchic metric approach for integration of green issues in manufacturing: a paper recycling application. J. Environ. Manage. 64, 261–272 (2002)
Nagano, T., Yamaguchi, T., Fukugawa, T.: Output fuzzy number of DEA. Communication Oper. Res. Soc. Japan 40, 425–429 (1995)
Nagarajan, M., Sošić, G.: Game-theoretic analysis of cooperation among supply chain agents: review and extensions. Eur. J. Oper. Res. 187, 719–745 (2008)
Ning, Y., Tang, W., Zhao, R.: Multiproduct aggregate production planning in fuzzy random environments. World J. Model. Simul. 2, 312–321 (2006)
Paksoy, T., Pehlivan, N.Y., Özceylan, E.: Fuzzy multi-objective optimization of a green supply chain network with risk management that includes environmental hazards. Hum. Ecol. Risk Assess. 18, 1120–1151 (2012)
Pan, Y., Yang C., Li P.: Applying the model of game with fuzzy coalition to the optimum configuration of cooperation supply chain. In: Proceeding of Control Conference, pp. 1336–1340 (2006)
Pang, B., Bai, S.: An integrated fuzzy synthetic evaluation approach for supplier selection based on analytic network process. J. Intell. Manuf. 24, 163–174 (2013)
Peng, J.: Research on the optimization of green suppliers based on AHP and GRA. J. Inf. Comput. Sci. 9, 173–182 (2012)
Pramod, V.R., Banwet, D.K.: Fuzzy ISM for analyzing the inhibitors of a telecom service supply chain. Int. J. Inf. Syst. Supply Chain Manage. 6, 77–98 (2013)
Rasmusen, E.: Games and Information: An Introduction to Game Theory. Blackwell, Oxford (1989)
Sakawa, M., Nishizaki, I., Uemura, Y.: Fuzzy programming and profit and cost allocation for a production and transportation problem. Eur. J. Oper. Res. 131, 1–15 (2001)
Sarı, I.U., Öztayşi, B.: Forecasting energy demand using fuzzy seasonal time series: atlantis computational intelligence systems. Comput. Intell. Syst. Ind. Eng. 6, 251–269 (2012)
Seiford, L.: Data envelopment analysis: the evolution of the state of the art (1978-1995). J. Prod. Anal. 7, 99–137 (1996)
Selim, H., Araz, C., Ozkarahan, I.: Collaborative production–distribution planning in supply chain: a fuzzy goal programming approach. Transp. Res. Part E 44, 396–419 (2006)
Shahgholian, K., Shahraki, A., Vaezi, Z., Hajihosseini, H.: A model for supplier selection based on fuzzy multi-criteria group decision making. Afr. Bus. Manage. 6, 6254–6265 (2012)
Smirnov, A.V., Sheremetov, L.B., Chilov, N., Cortes, J.R.: Soft-computing technologies for configuration of cooperative supply chain. Appl. Soft Comput. 4, 87–107 (2004)
Srivastava, S.K.: Green supply-chain management: a state-of-the-art literature review. Int. J. Manage. Rev. 9, 53–80 (2007)
Teunter, R.H., Vlachos, D.: On the necessity of a disposal option for returned items that can be remanufactured. Int. J. Prod. Econ. 75, 257–266 (2002)
Tozan, H., Vayvay, O.: analyzing demand variability through sc using fuzzy regression and grey GM (1,1) forecasting model. In: Proceeding of Information Sciences, pp. 1088–1094 (2007)
Uno, T., Katagiri, H., Kato, K.: A stackelberg location on a network with fuzzy random demand quantities using possibility measure. Intell. Decis. Technol. Smart Innovation, Syst. Technol. 15, 67–75 (2012)
Vachon, S., Klassen, R.D.: Environmental management and manufacturing performance: The role of collaboration in the supply chain. Int. J. Prod. Econ. 111, 299–315 (2008)
Wang, Y., Luanxiangjing, Wu, C.: The green supply chain evaluation and construction of a coal chemical enterprise in Hebei province which based on fuzzy-AHP method. Am. J. Eng. Technol. Res. 11, 2365–2370 (2011)
Wu, C.H., Kuo, T.C., Lu, Y.Y.: Environmental principles applicable to green supplier evaluation by using multi-objective decision analysis. Int. J. Prod. Res. 45, 4317–4331 (2007)
Xiong, G., Koivisto, H.: Research on fuzzy inventory control under supply chain management environment. In: Computational Science ICCS, Lecture Notes in Computer Science, Vol. 2658, pp. 907–916 (2003)
Yalabik, B., Petruzzi, N.C., Chhajed, D.: An integrated product returns model with logistics and marketing coordination. Eur. J. Oper. Res. 161, 162–182 (2005)
Yang, J.: Fuzzy integrative performance evaluation for supply chain system. In: Proceeding of ACIS International Conference on Software Engineering, Artificial Intelligence, Networking, and Parallel/Distributed Computing, Vol. 2, pp. 47–52 (2007)
Yang, J.L., Chiu, H.N., Tzeng, G.H., Yeh, R.Y.: Vendor selection by integrated fuzzy MCDM techniques with independent and interdependent relationships. Inf. Sci. 178, 4166–4183 (2008)
Yong, Y., Zhang, Y-.H.: Fuzzy evaluating method for channel research in e-supply chain. In: Proceedings of the International Seminar on Business and Information Management, Vol. 2, pp. 96–99 (2008)
Yu, M.-C., Goh, M., Lin, H.-C.: Fuzzy multi-objective vendor selection under lean procurement. Eur. J. Oper. Res. 219, 305–311 (2012)
Zarandi, M.F., Türkşen, I., Saghiri, S.: Supply chain: crisp and fuzzy aspects. Int. J. Appl. Math. Comput. Sci. 12, 423–435 (2002)
Zhou, C., Zhao, R., Tang, W.: Two-echelon supply chain games in a fuzzy environment. Comput. Ind. Eng. 55, 390–405 (2008)
Zimmerman, H.J.: Fuzzy Set Theory and Its Applications. Kluwer-Nijhoff, Boston (1985)
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Chen, YW., Larbani, M. (2014). Fuzzy Multiple Criteria Decision Making for Supply Chain Management. In: Kahraman, C., Öztayşi, B. (eds) Supply Chain Management Under Fuzziness. Studies in Fuzziness and Soft Computing, vol 313. Springer, Berlin, Heidelberg. https://doi.org/10.1007/978-3-642-53939-8_6
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