Development of Topsis Technique Under Pythagorean Fuzzy Hypersoft Environment Based on Correlation Coefficient and Its Application Towards the Selection of Antivirus Mask in Covid-19 Pandemic
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Date
2021
Journal Title
Journal ISSN
Volume Title
Publisher
Hindawi Limited
Open Access Color
GOLD
Green Open Access
No
OpenAIRE Downloads
OpenAIRE Views
Publicly Funded
No
Abstract
The correlation coefficient between two variables plays an important role in statistics. Also, the accuracy of relevance assessment depends on information from a set of discourses. The data collected from numerous statistical studies are full of exceptions. The Pythagorean fuzzy hypersoft set (PFHSS) is a parameterized family that deals with the subattributes of the parameters and an appropriate extension of the Pythagorean fuzzy soft set. It is also the generalization of the intuitionistic fuzzy hypersoft set (IFHSS), which is used to accurately assess insufficiency, anxiety, and uncertainties in decision-making. The PFHSS can accommodate more uncertainties compared to the IFHSS, and it is the most substantial methodology to describe fuzzy information in the decision-making process. The core objective of the this study is to develop the notion and features of the correlation coefficient and the weighted correlation coefficient for PFHSS and to introduce the aggregation operators such as Pythagorean fuzzy hypersoft weighted average (PFHSWA) and Pythagorean fuzzy hypersoft weighted geometric (PFHSWG) operators under the PFHSS scenario. A prioritization technique for order preference by similarity to the ideal solution (TOPSIS) under PFHSS based on correlation coefficients and weighted correlation coefficients is presented. Through the developed methodology, a technique for solving multiattribute group decision-making (MAGDM) problem is planned. Also, the importance of the developed methodology and its application in indicating multipurpose antivirus mask throughout the COVID-19 pandemic period is presented. A brief comparative analysis is described with the advantages, effectiveness, and flexibility of numerous existing studies that demonstrate the effectiveness of the proposed method. © 2021 Rana Muhammad Zulqarnain et al.
Description
Keywords
Intuitionistic Fuzzy Sets, Artificial intelligence, Social Sciences, Geometry, Set (abstract data type), Management Science and Operations Research, Multi-Criteria Decision Making, Operations research, Decision Sciences, Fuzzy Logic, Fuzzy Logic and Residuated Lattices, FOS: Mathematics, TOPSIS, Data mining, Pythagorean theorem, Physics, Mathematical optimization, Statistics, Application of Soft Set Theory in Decision Making, QA75.5-76.95, Computer science, Programming language, Fuzzy logic, Correlation coefficient, Computational Theory and Mathematics, Interval-Valued Fuzzy Sets, Electronic computers. Computer science, Computer Science, Physical Sciences, Fuzzy set, Thermodynamics, Mathematics, Ideal solution, Decision-making
Fields of Science
02 engineering and technology, 0202 electrical engineering, electronic engineering, information engineering
Citation
Zulqarnain, R.M...et al. (2021). "Development of TOPSIS Technique under Pythagorean Fuzzy Hypersoft Environment Based on Correlation Coefficient and Its Application towards the Selection of Antivirus Mask in COVID-19 Pandemic", Complexity, Vol. 2021.
WoS Q
Q2
Scopus Q
Q1

OpenCitations Citation Count
37
Source
Complexity
Volume
2021
Issue
Start Page
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CrossRef : 30
Scopus : 53
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Mendeley Readers : 16
SCOPUS™ Citations
54
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3
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