Some Operators With Ivgsvtrn Numbers And Their Applications To Multiple Criteria Group Decision Making


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Some operators with IVGSVTrN-numbers and their applications to multiple criteria group decision making


Some operators with IVGSVTrN-numbers and their applications to multiple criteria group decision making

Author: Irfan Deli

language: en

Publisher: Infinite Study

Release Date:


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Interval valued generalized single valued neutrosophic trapezoidal number (IVGSVTrN-number), which permits the membership degrees of an element to a set expressed with intervals rather than exact numbers, is considered to be very useful to describe uncertain information for analyzing multiple criteria decision making (MCDM) problems. In this paper, we firstly introduced the concept of IVGSVTrN-number with some operations based on neutrosophic number. Then, we presented some aggregation and geometric operators. Finally, we developed a approaches for multiple criteria group decision making problems based on the proposed operators and we applied the method to a numerical example to illustrate proposed approach.

Neutrosophic Sets and Systems: An International Book Series in Information Science and Engineering, vol. 25 / 2019


Neutrosophic Sets and Systems: An International Book Series in Information Science and Engineering, vol. 25 / 2019

Author: Florentin Smarandache

language: en

Publisher: Infinite Study

Release Date:


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“Neutrosophic Sets and Systems” has been created for publications on advanced studies in neutrosophy, neutrosophic set, neutrosophic logic, neutrosophic probability, neutrosophic statistics that started in 1995 and their applications in any field, such as the neutrosophic structures developed in algebra, geometry, topology, etc.

Generalized Neutrosophic TOPSIS to Solve Multi-Criteria Decision-Making Problems


Generalized Neutrosophic TOPSIS to Solve Multi-Criteria Decision-Making Problems

Author: Rana Muhammad Zulqarnain

language: en

Publisher: Infinite Study

Release Date: 2020-12-01


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Multi-criteria decision making (MCDM) is the technique of selecting the best alternative from multiple alternatives and multiple conditions. The technique for order preference by similarity to an ideal solution (TOPSIS) is a crucial practical technique for ranking and selecting different options by using a distance measure. In this article, we protract the fuzzy TOPSIS technique to neutrosophic fuzzy TOPSIS, and prove the accuracy of the method by explaining the MCDM problem with single-value neutrosophic information, and use the method for supplier selection in the production industry. We hope that this article will promote future scientific research on numerous existence issues based on multi-criteria decision making.