A probabilistic early fault detection model for a feedback machining system with multiple types of spares

This paper studies corrective and preventive maintenance to provide a quality control policy. The corrective maintenance, depending on the time, of a feedback machining system model with a finite source and standbys is presented. Moreover, the system has a known number of servers to repair the damag...

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Published inScientific reports Vol. 13; no. 1; pp. 22609 - 15
Main Authors El-Hadidy, Mohamed Abd Allah, Elshenawy, Assem Omar
Format Journal Article
LanguageEnglish
Published London Nature Publishing Group UK 18.12.2023
Nature Publishing Group
Nature Portfolio
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ISSN2045-2322
2045-2322
DOI10.1038/s41598-023-49073-6

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Abstract This paper studies corrective and preventive maintenance to provide a quality control policy. The corrective maintenance, depending on the time, of a feedback machining system model with a finite source and standbys is presented. Moreover, the system has a known number of servers to repair the damaged units, and it contains an inspector to ensure the maintenance quality of the repaired units. The exact value of the probability of n units in the system will be obtained by using an efficient algorithm that depends on the Laplace transformation. To promote the concept of preventive maintenance, we use this probability to get the probability of early fault detection as a function of time and in the steady state. The applicability of this model is discussed for different system capacities.
AbstractList This paper studies corrective and preventive maintenance to provide a quality control policy. The corrective maintenance, depending on the time, of a feedback machining system model with a finite source and standbys is presented. Moreover, the system has a known number of servers to repair the damaged units, and it contains an inspector to ensure the maintenance quality of the repaired units. The exact value of the probability of n units in the system will be obtained by using an efficient algorithm that depends on the Laplace transformation. To promote the concept of preventive maintenance, we use this probability to get the probability of early fault detection as a function of time and in the steady state. The applicability of this model is discussed for different system capacities.This paper studies corrective and preventive maintenance to provide a quality control policy. The corrective maintenance, depending on the time, of a feedback machining system model with a finite source and standbys is presented. Moreover, the system has a known number of servers to repair the damaged units, and it contains an inspector to ensure the maintenance quality of the repaired units. The exact value of the probability of n units in the system will be obtained by using an efficient algorithm that depends on the Laplace transformation. To promote the concept of preventive maintenance, we use this probability to get the probability of early fault detection as a function of time and in the steady state. The applicability of this model is discussed for different system capacities.
This paper studies corrective and preventive maintenance to provide a quality control policy. The corrective maintenance, depending on the time, of a feedback machining system model with a finite source and standbys is presented. Moreover, the system has a known number of servers to repair the damaged units, and it contains an inspector to ensure the maintenance quality of the repaired units. The exact value of the probability of n units in the system will be obtained by using an efficient algorithm that depends on the Laplace transformation. To promote the concept of preventive maintenance, we use this probability to get the probability of early fault detection as a function of time and in the steady state. The applicability of this model is discussed for different system capacities.
Abstract This paper studies corrective and preventive maintenance to provide a quality control policy. The corrective maintenance, depending on the time, of a feedback machining system model with a finite source and standbys is presented. Moreover, the system has a known number of servers to repair the damaged units, and it contains an inspector to ensure the maintenance quality of the repaired units. The exact value of the probability of n units in the system will be obtained by using an efficient algorithm that depends on the Laplace transformation. To promote the concept of preventive maintenance, we use this probability to get the probability of early fault detection as a function of time and in the steady state. The applicability of this model is discussed for different system capacities.
ArticleNumber 22609
Author Elshenawy, Assem Omar
El-Hadidy, Mohamed Abd Allah
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crossref_primary_10_1080_23324309_2024_2332690
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  publication-title: Int. J. Math. Oper. Res.
  doi: 10.1504/IJMOR.2017.080747
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  publication-title: Quality Technol. Quant. Manag.
  doi: 10.1080/16843703.2009.11673193
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  issue: 1
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  publication-title: Qual. Reliab. Eng. Int.
  doi: 10.1002/qre.2728
– volume: 32
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  publication-title: Afr. Mat.
– volume: 18
  start-page: 210
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  ident: 49073_CR24
  publication-title: Int. J. Math. Oper. Res.
  doi: 10.1504/IJMOR.2021.112929
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Snippet This paper studies corrective and preventive maintenance to provide a quality control policy. The corrective maintenance, depending on the time, of a feedback...
Abstract This paper studies corrective and preventive maintenance to provide a quality control policy. The corrective maintenance, depending on the time, of a...
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SubjectTerms 639/166/988
639/705
639/705/531
Algorithms
Assembly lines
Cold
Customer services
Feedback
Humanities and Social Sciences
Iterative methods
Laplace transforms
multidisciplinary
Preventive maintenance
Probability
Quality control
Science
Science (multidisciplinary)
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Title A probabilistic early fault detection model for a feedback machining system with multiple types of spares
URI https://link.springer.com/article/10.1038/s41598-023-49073-6
https://www.ncbi.nlm.nih.gov/pubmed/38114586
https://www.proquest.com/docview/2903739653
https://www.proquest.com/docview/2904156639
https://pubmed.ncbi.nlm.nih.gov/PMC10730539
https://doaj.org/article/336211910a0f4ec7b6ebe3bd77146242
Volume 13
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