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Cited 5 time in webofscience Cited 8 time in scopus
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Neutrosophic Rayleigh Model With Some Basic Characteristics and Engineering Applicationsopen access

Authors
Khan, ZahidGulistan, MuhammadKausar, NasreenPark, Choonkil
Issue Date
2021
Publisher
IEEE-INST ELECTRICAL ELECTRONICS ENGINEERS INC
Keywords
Neutrosophic logic; Rayleigh model; control chart; neutrosophic parameters
Citation
IEEE ACCESS, v.9, pp.71277 - 71283
Indexed
SCIE
SCOPUS
Journal Title
IEEE ACCESS
Volume
9
Start Page
71277
End Page
71283
URI
https://scholarworks.bwise.kr/hanyang/handle/2021.sw.hanyang/144079
DOI
10.1109/ACCESS.2021.3078150
Abstract
The fundamentals of neutrosophic statistics provide a new basis for working with indeterminate data problems. In this study, the notion of the neutrosophic Rayleigh distribution (RDN) has been introduced. The neutrosphic extension of the classical Rayleigh model with several application areas is highlighted. The major characteristics of the proposed distribution are described in a way that suggested model can be utilized in different situations involving undetermined, vague and fuzzy data. The usage of proposed distribution notably in the domain of statistical process control (SPC) is considered. The classical structure of V-SQR-chart is not capable of capturing uncertainty on studied variables. The mathematical structure of the V-NR-chart based on the proposed neutrosophic distribution has been developed. The neutrosphic parameters of the proposed V-NR-chart with other related performance metrics such as neutrosophy run length (ARL(N)) and neutrosophy power curve (PCN) are established. The proposed chart's performance in a neutrosophic environment is also evaluated to the existing model. Results from this comparative analysis reveal that the suggested V-NR-chart outperforms its current equivalent in terms of neutrosophic statistical power. Finally, a charting structure of proposed design for service life of ball bearings data is considered with a view to support implementation procedure of the proposed neutrosophic design in real-world scenarios.
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