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Original Articles

The Intuitionistic Fuzzy ELECTRE model

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Pages 139-145 | Received 13 Jul 2016, Accepted 28 Jun 2017, Published online: 05 Sep 2017

References

  • Andriosopoulos, D., Gaganis, C., Pasiouras, F., & Zopounidis, C. (2012). An application of multicriteria decision aid models in the prediction of open market share repurchases. Omega, 40, 882–890.10.1016/j.omega.2012.01.009
  • Armaghan, N., & Renaud, J. (2012). An application of multi-criteria decision aids models for Case-based reasoning. Information Sciences, 210, 55–66.10.1016/j.ins.2012.04.033
  • Atanassov, K. T. (1986). Intuitionistic fuzzy sets. Fuzzy Sets and Systems, 20, 87–96.10.1016/S0165-0114(86)80034-3
  • Atanassov, K. T. (1999). Intuitionistic fuzzy sets: Theory and applications. New York, NY: springer-Verlag.
  • Atanassov, K., Pasi, G., & Yager, R. (2005). Intuitionistic fuzzy interpretations of multi-criteria multi-person and multi-measurement tool decision making. International Journal of Systems Science, 36, 859–868.10.1080/00207720500382365
  • Beccali, M., Cellura, M., & Ardente, D. (1998). Decision making in energy planning: The ELECTRE multicriteria analysis approach compared to a fuzzy-sets methodology. Energy Conversion and Management, 39, 1869–1881.10.1016/S0196-8904(98)00053-3
  • Benayoun, R., & Billsberry J. (2007). Experiencing recruitment and selection. Hoboken, NJ, Wiley &Sons.
  • Boran, F. E. (2011). An integrated intuitionistic fuzzy multi criteria decision making method for facility location selection. Mathematical and Computational Applications, 16, 487–496.10.3390/mca16020487
  • Boran, F. E., Boran, K., & Menlik, T. (2012). The evaluation of renewable energy technologies for electricity generation in Turkey using intuitionistic fuzzy TOPSIS. Energy Sources Part B, 7, 81–90.10.1080/15567240903047483
  • Boran, F. E., Genc, S., & Akay, D. (2011). Personnel selection based on intuitionistic fuzzy sets. Human Factors and Ergonomics in Manufacturing, 21, 493–503.10.1002/hfm.20252
  • Büyüközkan, G., & Güleryüz, S. (2016). Multi criteria group decision making approach for smart phone selection using intuitionistic fuzzy TOPSIS. International Journal of Computational Intelligence Systems, 9, 709–725.10.1080/18756891.2016.1204119
  • Chen, T. Y. (2016). An IVIF-ELECTRE outranking method for multiple criteria decision-making with interval-valued intuitionistic fuzzy sets. Technological and Economic Development of Economy, 22, 416–452.10.3846/20294913.2015.1072751
  • De, S. K., Biswas, R., & Roy, R. (2001). An application of intuitionistic fuzzy sets in medical diagnosis. Fuzzy Sets and Systems, 117, 209–213.10.1016/S0165-0114(98)00235-8
  • Grzegorzewski, P. (2004). Distances between intuitionistic fuzzy sets and/or interval-valued fuzzy sets based on the Haus-dorff metric. Fuzzy Sets and Systems, 148, 319–328.10.1016/j.fss.2003.08.005
  • Hashemi, S. S., Hajiagha, S. H. R., Zavadskas, E. K., & Mahdiraji H. A. (2016). Multicriteria group decision making with ELECTRE III method based on interval-valued intuitionistic fuzzy information. Applied Mathematical Modelling, Applied Mathematical Modeling, 40, 1554–1564.10.1016/j.apm.2015.08.011
  • Hong, D. H., & Choi, C. H. (2000). Multicriteria fuzzy decision-making problems based on vague set theory. Fuzzy Sets and Systems, 114, 103–113.10.1016/S0165-0114(98)00271-1
  • Hung, W. L., & Yang, M. S. (2004). Similarity measures of intuitionistic fuzzy sets based on Hausdorff distance. Pattern Recognition Letters, 25, 1603–1611.10.1016/j.patrec.2004.06.006
  • Kahraman, Ç., & Ruan, D., & Doğan, I. (2003). Fuzzy group decision-making for facility location selection. Information Sciences, 157, 135–153.10.1016/S0020-0255(03)00183-X
  • Kahraman, Ç. & Ruan, D., & Ethem, T. (2002). Capital budgeting techniques using discounted fuzzy versus probabilistic cash flows. Information Sciences, 42, 57–76.10.1016/S0020-0255(02)00157-3
  • Li, D. F., & Cheng, C. T. (2002). New similarity measures of intuitionistic fuzzy sets and application to pattern recognitions. Pattern Recognition Letters, 23, 221–225.
  • Liang, Z., & Shi, P. (2003). Similarity measures on intuitionistic fuzzy sets. Pattern Recognition Letters, 24, 2687–2693.10.1016/S0167-8655(03)00111-9
  • Liu, H. W., & Wang, G. J. (2007). Multi-criteria decision-making methods based on intuitionistic fuzzy sets. European Journal of Operational Research, 179, 220–233.10.1016/j.ejor.2006.04.009
  • Rouyendegh, B. D. (2012). Evaluating projects based on Intuitionistic Fuzzy group decision making. Journal of Applied Mathematics, 1–16.10.1155/2012/824265
  • Rouyendegh, B. D. (2015). Developing an integrated ANP and Intuitionistic Fuzzy TOPSIS Model for Supplier Selection. Journal of Testing and Evaluation, 43, 664–672.
  • Rouyendegh, B. D., & Erol, S. (2012). Selecting the best project using the Fuzzy ELECTRE method. Mathematical Problem in Engineering, 2012, 1–12.10.1155/2012/790142
  • Roy, B. (1968). Classement et a choix en presence de points de vue multiples (la methode Electre) [Ranking and choice in the presence of multiple points of view]. RIRO, 8, 57–75.10.1051/ro/196802V100571
  • Roy, B. (1978). ELECTRE III: Un algorithme de classements fonde sur une representation floue des preferenceen presence de criteres multiples [An algorithm of rankings based on a fuzzy representation of the preference in the presence of multiple criteria]. Cahiers de CERO, 20, 3–24.
  • Roy, B. (1985). Me ‘thodologie multicrite’ re d’aide a ‘la de’ cision [Multi-criteria decision support methodology]. Paris: Economica.
  • Roy, B., & Bertier, P. (1973). La methode ELECTRE II:Une methode au media-planning [The ELECTRE II method: A method for media planning]. In M. Ross (Ed.), Operational research (1972) (pp. 291–302). Amsterdam: North-Holland.
  • Saaty, T. L. (1996). Decision making with dependence and feedback, the analytic network process. Pittsburgh, PA: RWS Publications.
  • Singh, S.K., & Yadav S. P. (2015). Modeling and optimization of multi objective non-linear programming problem in intuitionistic fuzzy environment. Applied Mathematical Modeling, 39, 4617–4629.10.1016/j.apm.2015.03.064
  • Szmidt, E., & Kacprzyk, J. (2000). Distances between intuitionistic fuzzy sets. Fuzzy Sets and Systems, 114, 505–518.10.1016/S0165-0114(98)00244-9
  • Szmidt E., & Kacprzyk, J. (2001). Intuitionistic fuzzy sets in some medical applications. In Proceedings of the International Conference, 7th Fuzzy Days on Computational Intelligence, Theory and Applications (pp. 148-151). Dortmund, Germany.
  • Szmidt, E., & Kacprzyk, J. (2002). Using intuitionistic fuzzy sets in group decision making. Control and Cybernetics, 31, 1037–1053.
  • Szmidt, E., & Kacprzyk, J. (2003). A consensus-reaching process under intuitionistic fuzzy preference relations. International Journal of Intelligent Systems, 18, 837–852.10.1002/(ISSN)1098-111X
  • Triantaphyllou, E. (2000). Multi-criteria decision making methods: A comparative study. London: Kluwer Academic Publishers.10.1007/978-1-4757-3157-6
  • Vahdani, B., & Hadipour, H. (2011). Extension of the ELECTRE method based on interval –valued fuzzy sets. Soft Computation, 15, 569–579.10.1007/s00500-010-0563-5
  • Vlachos, I. K., & Sergiadis, G. D. (2007). Intuitionistic fuzzy information ? Applications to pattern recognition. Pattern Recognition Letters, 28, 197–206.10.1016/j.patrec.2006.07.004
  • Wang, P. (2009). QoS-aware web services selection with intuitionistic fuzzy set under consumer’s vague perception. Expert Systems with Applications, 36, 4460–4466.10.1016/j.eswa.2008.05.007
  • Wang, W., & Xin, X. (2005). Distance measure between intuitionistic fuzzy sets. Pattern Recognition Letters, 26, 2063–2069.10.1016/j.patrec.2005.03.018
  • Xu, Z. (2007a). Intuitionistic preference relations and their application in group decision making. Information Sciences, 177, 2363–2379.10.1016/j.ins.2006.12.019
  • Xu, Z. (2007b). Some similarity measures of intuitionistic fuzzy sets and their applications to multiple attribute decision making. Fuzzy Optimization and Decision Making, 6, 109–121.10.1007/s10700-007-9004-z
  • Xu, Z. S. (2007c). Models for multiple attribute decision making with intuitionistic fuzzy information. International Journal of Uncertainty, Fuzziness and Knowledge-Based Systems, 15, 285–297.10.1142/S0218488507004686
  • Xu, Zeshui, & Liao, H. (2014). Intuitionistic Fuzzy Analytic Hierarchy Process. IEEE Transactions on Fuzzy System, 22, 749–761.10.1109/TFUZZ.2013.2272585
  • Xu, Z., & Yager, R. R. (2008). Dynamic intuitionistic fuzzy multi-attribute decision making. International Journal of Approximate Reasoning, 48, 246–262.10.1016/j.ijar.2007.08.008
  • Yang, T., & Hung, C. C. (2007). Multiple-attribute decision making methods for plant layout design problem. Robotics and Computer-Integrated Manufacturing, 23, 126–137.10.1016/j.rcim.2005.12.002
  • Zadeh, L. A. (1965). Fuzzy sets. Information and Control, 8, 338–353.10.1016/S0019-9958(65)90241-X
  • Zhang, C., & Fu, H. (2006). Similarity measures on three kinds of fuzzy sets. Pattern Recognition Letters, 27, 1307–1317.10.1016/j.patrec.2005.11.020

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