Analysis of the efficacy of operational availability equations on series and parallel systems

The errors of calculation of the availability may bring as a consequence mistakes in the decision making in operational systems management. For this reason, the objective of this paper is to evaluate the efficacy of the current equations for the calculation of the availability of series and parallel...

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Main Authors: Eduardo Segundo Hernández-Dávila, José Antonio Granizo, Marco Santillán-Gallegos, Marco Haro-Medina
Format: Article
Language:English
Published: Universidad Nacional de Colombia 2018-10-01
Series:Dyna
Subjects:
Online Access:https://revistas.unal.edu.co/index.php/dyna/article/view/71658
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spelling doaj-8ef156adccac44909ee3b751de44d29f2020-11-24T21:55:14ZengUniversidad Nacional de Colombia Dyna0012-73532346-21832018-10-018520726927710.15446/dyna.v85n207.7165849952Analysis of the efficacy of operational availability equations on series and parallel systemsEduardo Segundo Hernández-Dávila0José Antonio Granizo1Marco Santillán-Gallegos2Marco Haro-Medina3Escuela Superior Politécnica de ChimborazoEscuela Superior Politécnica de ChimborazoEscuela Superior Politécnica de ChimborazoEscuela Superior Politécnica de ChimborazoThe errors of calculation of the availability may bring as a consequence mistakes in the decision making in operational systems management. For this reason, the objective of this paper is to evaluate the efficacy of the current equations for the calculation of the availability of series and parallel systems. For that purpose, the non-manufactured production calculated by these equations was compared with the real non-manufactured production which is a function of the down time of each component. These calculations constituted the deterministic model used in the simulations through Monte Carlo method, for which the statistical software R was used. The results were evaluated by the Kolmogorov Smirnov normality test with the modification of Lilliefors. The comparison of means to evaluate the efficacy of the current equations were performed using the t statistic; for this the data were previously approximated to the normal distribution by the central limit theorem.https://revistas.unal.edu.co/index.php/dyna/article/view/71658availabilitydown timeseries systemsparallel systemsnon-manufactured products
collection DOAJ
language English
format Article
sources DOAJ
author Eduardo Segundo Hernández-Dávila
José Antonio Granizo
Marco Santillán-Gallegos
Marco Haro-Medina
spellingShingle Eduardo Segundo Hernández-Dávila
José Antonio Granizo
Marco Santillán-Gallegos
Marco Haro-Medina
Analysis of the efficacy of operational availability equations on series and parallel systems
Dyna
availability
down time
series systems
parallel systems
non-manufactured products
author_facet Eduardo Segundo Hernández-Dávila
José Antonio Granizo
Marco Santillán-Gallegos
Marco Haro-Medina
author_sort Eduardo Segundo Hernández-Dávila
title Analysis of the efficacy of operational availability equations on series and parallel systems
title_short Analysis of the efficacy of operational availability equations on series and parallel systems
title_full Analysis of the efficacy of operational availability equations on series and parallel systems
title_fullStr Analysis of the efficacy of operational availability equations on series and parallel systems
title_full_unstemmed Analysis of the efficacy of operational availability equations on series and parallel systems
title_sort analysis of the efficacy of operational availability equations on series and parallel systems
publisher Universidad Nacional de Colombia
series Dyna
issn 0012-7353
2346-2183
publishDate 2018-10-01
description The errors of calculation of the availability may bring as a consequence mistakes in the decision making in operational systems management. For this reason, the objective of this paper is to evaluate the efficacy of the current equations for the calculation of the availability of series and parallel systems. For that purpose, the non-manufactured production calculated by these equations was compared with the real non-manufactured production which is a function of the down time of each component. These calculations constituted the deterministic model used in the simulations through Monte Carlo method, for which the statistical software R was used. The results were evaluated by the Kolmogorov Smirnov normality test with the modification of Lilliefors. The comparison of means to evaluate the efficacy of the current equations were performed using the t statistic; for this the data were previously approximated to the normal distribution by the central limit theorem.
topic availability
down time
series systems
parallel systems
non-manufactured products
url https://revistas.unal.edu.co/index.php/dyna/article/view/71658
work_keys_str_mv AT eduardosegundohernandezdavila analysisoftheefficacyofoperationalavailabilityequationsonseriesandparallelsystems
AT joseantoniogranizo analysisoftheefficacyofoperationalavailabilityequationsonseriesandparallelsystems
AT marcosantillangallegos analysisoftheefficacyofoperationalavailabilityequationsonseriesandparallelsystems
AT marcoharomedina analysisoftheefficacyofoperationalavailabilityequationsonseriesandparallelsystems
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