Evaluation of the Economic Relationships on the Basis of Statistical Decision-Making in Complex Neutrosophic Environment

Fuzzy sets and fuzzy logics are used to model events with imprecise, incomplete, and uncertain information. Researchers have developed numerous methods and techniques to cope with fuzziness or uncertainty. This research intends to introduce the novel concepts of complex neutrosophic relations (CNRs)...

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Main Authors: Abdul Nasir, Naeem Jan, Abdu Gumaei, Sami Ullah Khan, Mabrook Al-Rakhami
Format: Article
Language:English
Published: Hindawi-Wiley 2021-01-01
Series:Complexity
Online Access:http://dx.doi.org/10.1155/2021/5595474
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spelling doaj-3617ca2bd689483ab5a7cc266d1c80852021-05-17T00:00:29ZengHindawi-WileyComplexity1099-05262021-01-01202110.1155/2021/5595474Evaluation of the Economic Relationships on the Basis of Statistical Decision-Making in Complex Neutrosophic EnvironmentAbdul Nasir0Naeem Jan1Abdu Gumaei2Sami Ullah Khan3Mabrook Al-Rakhami4Department of MathematicsDepartment of MathematicsComputer Science DepartmentDepartment of MathematicsResearch Chair of Pervasive and Mobile ComputingFuzzy sets and fuzzy logics are used to model events with imprecise, incomplete, and uncertain information. Researchers have developed numerous methods and techniques to cope with fuzziness or uncertainty. This research intends to introduce the novel concepts of complex neutrosophic relations (CNRs) and its types based on the idea of complex neutrosophic sets (CNSs). In addition, these concepts are supported by suitable examples. A CNR discusses the quality of a relationship using the degree of membership, the degree of abstinence, and the degree of nonmembership. Each of these degrees is a complex number from the unit circle in a complex plane. The real part of complex-valued degrees represents the amplitude term, while the imaginary part represents the phase term. This property empowers CNRs to model multidimensional variables. Moreover, some interesting properties and useful results have also been proved. Furthermore, the practicality of the proposed concepts is verified by an application, which discusses the use of the proposed concepts in statistical decision-making. Additionally, a comparative analysis between the novel concepts of CNRs and the existing methods is carried out.http://dx.doi.org/10.1155/2021/5595474
collection DOAJ
language English
format Article
sources DOAJ
author Abdul Nasir
Naeem Jan
Abdu Gumaei
Sami Ullah Khan
Mabrook Al-Rakhami
spellingShingle Abdul Nasir
Naeem Jan
Abdu Gumaei
Sami Ullah Khan
Mabrook Al-Rakhami
Evaluation of the Economic Relationships on the Basis of Statistical Decision-Making in Complex Neutrosophic Environment
Complexity
author_facet Abdul Nasir
Naeem Jan
Abdu Gumaei
Sami Ullah Khan
Mabrook Al-Rakhami
author_sort Abdul Nasir
title Evaluation of the Economic Relationships on the Basis of Statistical Decision-Making in Complex Neutrosophic Environment
title_short Evaluation of the Economic Relationships on the Basis of Statistical Decision-Making in Complex Neutrosophic Environment
title_full Evaluation of the Economic Relationships on the Basis of Statistical Decision-Making in Complex Neutrosophic Environment
title_fullStr Evaluation of the Economic Relationships on the Basis of Statistical Decision-Making in Complex Neutrosophic Environment
title_full_unstemmed Evaluation of the Economic Relationships on the Basis of Statistical Decision-Making in Complex Neutrosophic Environment
title_sort evaluation of the economic relationships on the basis of statistical decision-making in complex neutrosophic environment
publisher Hindawi-Wiley
series Complexity
issn 1099-0526
publishDate 2021-01-01
description Fuzzy sets and fuzzy logics are used to model events with imprecise, incomplete, and uncertain information. Researchers have developed numerous methods and techniques to cope with fuzziness or uncertainty. This research intends to introduce the novel concepts of complex neutrosophic relations (CNRs) and its types based on the idea of complex neutrosophic sets (CNSs). In addition, these concepts are supported by suitable examples. A CNR discusses the quality of a relationship using the degree of membership, the degree of abstinence, and the degree of nonmembership. Each of these degrees is a complex number from the unit circle in a complex plane. The real part of complex-valued degrees represents the amplitude term, while the imaginary part represents the phase term. This property empowers CNRs to model multidimensional variables. Moreover, some interesting properties and useful results have also been proved. Furthermore, the practicality of the proposed concepts is verified by an application, which discusses the use of the proposed concepts in statistical decision-making. Additionally, a comparative analysis between the novel concepts of CNRs and the existing methods is carried out.
url http://dx.doi.org/10.1155/2021/5595474
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