Integration of maintenance policy and statistical process monitoring for a cascade process with multiple assignable causes and random failures
•Developing an integrated SPM-MP model for two-stage cascade processes.•Taking into account the random failure of machines.•Considering the possibility of occurring multiple assignable causes. This study develops an integrated model of statistical process monitoring and maintenance policy (MP) for a...
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Published in | Computers & industrial engineering Vol. 196; p. 110433 |
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Main Authors | , , , |
Format | Journal Article |
Language | English |
Published |
Elsevier Ltd
01.10.2024
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Subjects | |
Online Access | Get full text |
ISSN | 0360-8352 |
DOI | 10.1016/j.cie.2024.110433 |
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Abstract | •Developing an integrated SPM-MP model for two-stage cascade processes.•Taking into account the random failure of machines.•Considering the possibility of occurring multiple assignable causes.
This study develops an integrated model of statistical process monitoring and maintenance policy (MP) for a two-stage cascade process, involving two machines in series where the output of one stage affects the next stage. Instead of a single assignable cause (AC) affecting the quality characteristic, this production process experiences multiple ACs to more precisely simulate real conditions. Traditional and Hotelling’s T2 charts cannot detect the specific stage in which a shift occurs; therefore, this study employs a Cause-selecting control chart. The possibility of equipment failure and system stoppage are considered, with the process failure mechanism following a Weibull distribution. Depending on the conditions affecting the process or equipment, four MPs are considered to acheive the system’s initial condition, resulting in sixteen defined scenarios. The goal is to determine decision variables by minimizing a cost function subject to some statistical measures. This economic-statistical design can improve statistical and/or economic measures. However, it creates a more complex problem. Due to this complexity, a particle swarm optimization algorithm is used for optimization. The proposed model is implemented for a system that produces cotton yarn, with fiber length and skein strength are as the outputs of the first and second stages, respectively. Comparisons with two models validate the proposed model’s performance in cost reduction. A sensitivity analysis is performed for further investigations. The results indicate significant cost savings of the proposed model. |
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AbstractList | •Developing an integrated SPM-MP model for two-stage cascade processes.•Taking into account the random failure of machines.•Considering the possibility of occurring multiple assignable causes.
This study develops an integrated model of statistical process monitoring and maintenance policy (MP) for a two-stage cascade process, involving two machines in series where the output of one stage affects the next stage. Instead of a single assignable cause (AC) affecting the quality characteristic, this production process experiences multiple ACs to more precisely simulate real conditions. Traditional and Hotelling’s T2 charts cannot detect the specific stage in which a shift occurs; therefore, this study employs a Cause-selecting control chart. The possibility of equipment failure and system stoppage are considered, with the process failure mechanism following a Weibull distribution. Depending on the conditions affecting the process or equipment, four MPs are considered to acheive the system’s initial condition, resulting in sixteen defined scenarios. The goal is to determine decision variables by minimizing a cost function subject to some statistical measures. This economic-statistical design can improve statistical and/or economic measures. However, it creates a more complex problem. Due to this complexity, a particle swarm optimization algorithm is used for optimization. The proposed model is implemented for a system that produces cotton yarn, with fiber length and skein strength are as the outputs of the first and second stages, respectively. Comparisons with two models validate the proposed model’s performance in cost reduction. A sensitivity analysis is performed for further investigations. The results indicate significant cost savings of the proposed model. |
ArticleNumber | 110433 |
Author | Googoonani, Samira Kia, Reza Salmasnia, Ali Jafarian-Namin, Samrad |
Author_xml | – sequence: 1 givenname: Ali orcidid: 0000-0001-9263-2520 surname: Salmasnia fullname: Salmasnia, Ali email: a.salmasnia@qom.ac.ir organization: Department of Industrial Engineering, Faculty of Engineering, University of Qom, Qom, Iran – sequence: 2 givenname: Reza orcidid: 0000-0001-7642-4457 surname: Kia fullname: Kia, Reza email: r.kia@squ.edu.om organization: Department of Operations Management and Business Statistics, College of Economics and Political Science, Sultan Qaboos University, Muscat, Oman – sequence: 3 givenname: Samira surname: Googoonani fullname: Googoonani, Samira email: s.googoonani@stu.qom.ac.ir organization: Department of Industrial Engineering, Faculty of Engineering, University of Qom, Qom, Iran – sequence: 4 givenname: Samrad orcidid: 0000-0002-9275-2837 surname: Jafarian-Namin fullname: Jafarian-Namin, Samrad email: samrad.jafarian@stu.yazd.ac.ir organization: Department of Engineering Sciences, Faculty of Advanced Technologies, University of Mohaghegh Ardabili, Namin, Iran |
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Keywords | Multiple assignable causes Maintenance Cause-Selecting control chart Cascade process Particle swarm optimization |
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SubjectTerms | Cascade process Cause-Selecting control chart Maintenance Multiple assignable causes Particle swarm optimization |
Title | Integration of maintenance policy and statistical process monitoring for a cascade process with multiple assignable causes and random failures |
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