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 in | Scientific reports Vol. 13; no. 1; pp. 22609 - 15 |
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Main Authors | , |
Format | Journal Article |
Language | English |
Published |
London
Nature Publishing Group UK
18.12.2023
Nature Publishing Group Nature Portfolio |
Subjects | |
Online Access | Get full text |
ISSN | 2045-2322 2045-2322 |
DOI | 10.1038/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. |
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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 |
Author_xml | – sequence: 1 givenname: Mohamed Abd Allah surname: El-Hadidy fullname: El-Hadidy, Mohamed Abd Allah email: melhadidi@science.tanta.edu.eg organization: Mathematics Department, Faculty of Science, Tanta University – sequence: 2 givenname: Assem Omar surname: Elshenawy fullname: Elshenawy, Assem Omar organization: Department of Physics and Engineering Mathematics, Faculty of Engineering, Tanta University |
BackLink | https://www.ncbi.nlm.nih.gov/pubmed/38114586$$D View this record in MEDLINE/PubMed |
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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 |
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