An Aggregated Supplier Selection Method Based on QFD and TOPSIS (Case Study: A Financial Institution)
محورهای موضوعی : Journal of Physical & Theoretical ChemistryMohammad Ali Sobhanallahi 1 , Neda Zendehdel Nobari 2 , Seyed Hamid Reza Pasandideh 3
1 - Faculty of Engineering, Department of Industrial Engineering, Kharazmi University, Tehran, Iran
2 - Faculty of Engineering, Department of Industrial Engineering, Kharazmi University, Tehran, Iran
3 - Faculty of Engineering, Department of Industrial Engineering, Kharazmi University, Tehran, Iran
کلید واژه: Information Technology, TOPSIS, Multiple Criteria Decision Making, Quality Function Deployment, Supply Selection,
چکیده مقاله :
With daily development of information technology supply chain of service-based organizations like financial institutions and the increased value of outsourced activities, also the importance of customer satisfaction, outsourced affairs must have done by the suppliers who have the ability of accomplishing the organizational demands. To mitigate the risk of invalid supplier selections, verification and selection of the suppliers should be performed with an optimized and systematic solution. In order to help the selection of suppliers in the IT department of financial organizations, a different model by using a hybrid QFD-TOPSIS solution in MCDM methods is suggested, in this study. First goal of the provided model is finding the most related criteria and the second one is offering an optimized solution to the supplier selection problem. To begin the QFD part in the mentioned method, two categories of criteria are needed. Then, after the formation of the House of Quality, in a real case study that was performed in a private bank in Iran, the suppliers are ranked by using the proposed method. The greatest efficiencies of this method are not only finding the best supplier by measuring the nearest distance to the ideal and the farthest one to the negative-ideal solution but also closing the opinions of employers to the technical requirements (sub-criteria) of information technology supplier qualifications. Finally, a model reliability part is designed to indicate the validation of the proposed method and a sensitivity analysis is implemented to find the most sensitive sub-criteria. That is the results of ranking alter if sensitive sub-criteria change .
Bester field et al., Total Quality Management, 2008
Bevilacqua, Maurizio, F. E. Ciarapica, and G. Giacchetta. "A fuzzy-QFD approach to supplier selection." Journal of Purchasing and Supply Management 12.1 (2006): 14-27.
Boran, FatihEmre, et al. "A multi-criteria intuitionistic fuzzy group decision making for supplier selection with TOPSIS method." Expert Systems with Applications 36.8 (2009): 11363-11368.
Carnevalli, Jose A., and Paulo Cauchick Miguel. "Review, analysis and classification of the literature on QFD—Types of research, difficulties and benefits." International Journal of Production Economics 114.2 (2008): 737-754.
Dargi, Ahmad, et al. "Supplier selection: A fuzzy-ANP approach." Procedia Computer Science 31 (2014): 691-700.
Eshlaghy, Abbas Toloie, Alireza Pourebrahimi, and Babak Zendehdel Nobari. "Presenting a Model for Ranking Organizations Based on the Level of the Information Security Maturity." Computer and Information Science 4.1 (2011): 72.
Gumus, AlevTaskin. "Evaluation of hazardous waste transportation firms by using a two-step fuzzy-AHP and TOPSIS methodology." Expert Systems with Applications 36.2 (2009): 4067-4074.
Hwang, C.L. K.P. Yoon, Multiple Attribute Decision Making: Methods and Appli-cations, Springer-Verlag, New York, 1981.
Jahanshahloo, Gholam Reza, F. HosseinzadehLotfi, and Mohammad Izadikhah. "An algorithmic method to extend TOPSIS for decision-making problems with interval data." Applied mathematics and computation 175.2 (2006): 1375-1384.
Junior, Francisco Rodrigues Lima, LauroOsiro, and Luiz Cesar Ribeiro Carpinetti. "A comparison between Fuzzy AHP and Fuzzy TOPSIS methods to supplier selection." Applied Soft Computing 21 (2014): 194-209.
Kar, Arpan Kumar. "A hybrid group decision support system for supplier selection using analytic hierarchy process, fuzzy set theory and neural network." Journal of Computational Science 6 (2015): 23-33.
Karsak, E. Ertugrul, SevinSozer, and S. EmreAlptekin. "Product planning in quality function deployment using a combined analytic network process and goal programming approach." Computers & industrial engineering 44.1 (2003): 171-190.
Kumaraswamy, Aditya Hosanagara, et al. "An integrated QFD-TOPSIS methodology for supplier selection in SMEs." 2011 Third International Conference on Computational Intelligence, Modelling & Simulation. IEEE, 2011.
Li, Ming, Lei Jin, and Jun Wang. "A new MCDM method combining QFD with TOPSIS for knowledge management system selection from the user's perspective in intuitionistic fuzzy environment." Applied soft computing 21 (2014): 28-37.
Rajesh, G., and P. Malliga. "Supplier selection based on AHP QFD methodology." Procedia Engineering 64 (2013): 1283-1292.
Tavana, Madjid, MortezaYazdani, and Debora Di Caprio. "An application of an integrated ANP–QFD framework for sustainable supplier selection."International Journal of Logistics Research and Applications (2016): 1-22.
Wang, J.W., C.H. Cheng, K.C. Huang, Fuzzy hierarchical TOPSIS for supplier selection, Appl. Soft Comput. 9 (1) (2009) 377–386. ." Expert Systems with Applications37.9 (2010): 6218-6224.
Wang, Rong-Tsu. "Improving service quality using quality function deployment: The air cargo sector of China airlines." Journal of Air Transport Management 13.4 (2007): 221-228.
Yazdani, Morteza, et al. "Integrated QFD-MCDM framework for green supplier selection." Journal of Cleaner Production 142 (2017): 3728-3740.
Yazdani, Morteza, SarfarazHashemkhaniZolfani, and EdmundasKazimierasZavadskas. "New integration of MCDM methods and QFD in the selection of green suppliers." Journal of Business Economics and Management 17.6 (2016): 1097-1113.
Yildiz, Aytac, and A. YesimYayla. "Multi-criteria decision-making methods for supplier selection: A literature review." South African Journal of Industrial Engineering 26.2 (2015): 158-177.
Zouggari, Akram, and LyesBenyoucef. "Simulation based fuzzy TOPSIS approach for group multi-criteria supplier selection problem." Engineering Applications of Artificial Intelligence 25.3 (2012): 507-519.