Some important details on technical system: Matrix representation, odds ratio, embedding subsystems

The system signature calculated independently from the distribution of the lifetime of the units in the analysis of technical systems enables us to have important information about the reliability of the system. System signature is a probability vector obtained from possible sequences of units accor...

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Main Authors: Gurcan Mehmet, Bugatekin Ayse T., Gural Yunus
Format: Article
Language:English
Published: VINCA Institute of Nuclear Sciences 2019-01-01
Series:Thermal Science
Subjects:
Online Access:http://www.doiserbia.nb.rs/img/doi/0354-9836/2019/0354-98361900351G.pdf
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spelling doaj-8f590dcaa81a48879a3a1a0c3a484f472021-01-02T11:05:35ZengVINCA Institute of Nuclear SciencesThermal Science0354-98362019-01-0123Suppl. 61909191510.2298/TSCI190210351G0354-98361900351GSome important details on technical system: Matrix representation, odds ratio, embedding subsystemsGurcan Mehmet0Bugatekin Ayse T.1Gural Yunus2Department of Statistics, University of Firat, Elazig, TurkeyDepartment of Statistics, University of Firat, Elazig, TurkeyDepartment of Statistics, University of Firat, Elazig, TurkeyThe system signature calculated independently from the distribution of the lifetime of the units in the analysis of technical systems enables us to have important information about the reliability of the system. System signature is a probability vector obtained from possible sequences of units according to the moments of deterioration. The reliability of the system can be easily obtained if the distribution of the lifetime of the units is known and if the distributions can be listed as open among themselves. However, when the distributions cannot be listed as open among themselves, it is a very important finding that the system reliability is calculated with the help of system signature by generating the order statistics. It is also possible to calculate the odds ratios of the units when the lifetime of the units is certain. In this study, odds ratio could be calculated by calculating the probability of fail the system of each unit by considering the possible situations of the system, as in the system signature, regardless of the distribution of lifetime of the units. In addition, the technical system is represented by a matrix by establishing a relation between the system fail probabilities of the units obtained in the study and the system signature. However, examples of some technical systems given in the study.http://www.doiserbia.nb.rs/img/doi/0354-9836/2019/0354-98361900351G.pdfsystem signatureodds ratiosubsystemssystem reliability
collection DOAJ
language English
format Article
sources DOAJ
author Gurcan Mehmet
Bugatekin Ayse T.
Gural Yunus
spellingShingle Gurcan Mehmet
Bugatekin Ayse T.
Gural Yunus
Some important details on technical system: Matrix representation, odds ratio, embedding subsystems
Thermal Science
system signature
odds ratio
subsystems
system reliability
author_facet Gurcan Mehmet
Bugatekin Ayse T.
Gural Yunus
author_sort Gurcan Mehmet
title Some important details on technical system: Matrix representation, odds ratio, embedding subsystems
title_short Some important details on technical system: Matrix representation, odds ratio, embedding subsystems
title_full Some important details on technical system: Matrix representation, odds ratio, embedding subsystems
title_fullStr Some important details on technical system: Matrix representation, odds ratio, embedding subsystems
title_full_unstemmed Some important details on technical system: Matrix representation, odds ratio, embedding subsystems
title_sort some important details on technical system: matrix representation, odds ratio, embedding subsystems
publisher VINCA Institute of Nuclear Sciences
series Thermal Science
issn 0354-9836
publishDate 2019-01-01
description The system signature calculated independently from the distribution of the lifetime of the units in the analysis of technical systems enables us to have important information about the reliability of the system. System signature is a probability vector obtained from possible sequences of units according to the moments of deterioration. The reliability of the system can be easily obtained if the distribution of the lifetime of the units is known and if the distributions can be listed as open among themselves. However, when the distributions cannot be listed as open among themselves, it is a very important finding that the system reliability is calculated with the help of system signature by generating the order statistics. It is also possible to calculate the odds ratios of the units when the lifetime of the units is certain. In this study, odds ratio could be calculated by calculating the probability of fail the system of each unit by considering the possible situations of the system, as in the system signature, regardless of the distribution of lifetime of the units. In addition, the technical system is represented by a matrix by establishing a relation between the system fail probabilities of the units obtained in the study and the system signature. However, examples of some technical systems given in the study.
topic system signature
odds ratio
subsystems
system reliability
url http://www.doiserbia.nb.rs/img/doi/0354-9836/2019/0354-98361900351G.pdf
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