Two preventive replacement strategies for systems with protective auxiliary parts subject to degradation and economic dependence

•Two preventive replacement models are proposed for systems with two dependent parts.•Degradation and economic dependence between the two parts is considered.•The long-run average cost is derived by the technique of semi-regenerative process.•The optimal policy is derived for each model to minimize...

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Published inReliability engineering & system safety Vol. 204; p. 107144
Main Authors Shen, Jingyuan, Hu, Jiawen, Ma, Yizhong
Format Journal Article
LanguageEnglish
Published Barking Elsevier Ltd 01.12.2020
Elsevier BV
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ISSN0951-8320
1879-0836
DOI10.1016/j.ress.2020.107144

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Abstract •Two preventive replacement models are proposed for systems with two dependent parts.•Degradation and economic dependence between the two parts is considered.•The long-run average cost is derived by the technique of semi-regenerative process.•The optimal policy is derived for each model to minimize the long-run average cost.•Some insights are gained based on the sensitivity analysis of cost parameters. In many engineering systems, except for the critical parts fulfilling the main functions, there exist some parts equipped to protect the critical parts and enhance their reliabilities. Failures of these protective parts (named as auxiliary parts) do not halt the system directly like the critical parts. Dependence between the critical and auxiliary parts is commonly observed but has seen limited research. In this paper, we study systems with a critical subsystem and a protective auxiliary subsystem subject to degradation and economic dependence. For such systems, two preventive replacement models are presented. Model I allows the two subsystems to be replaced separately while Model II provides a joint replacement strategy. The long-run average cost of the system is derived by the technique of semi-regenerative process. Thereafter, the optimization problem is formulated with the objective of determining the optimal inspection period and preventive replacement thresholds that minimize the long-run average cost of each model. A numerical study of a boring tool equipped with a damper as the auxiliary subsystem is provided to demonstrate the proposed method. Finally, sensitivity analysis on the cost parameters is conducted, based on which the two proposed maintenance models are compared and their application conditions are discussed.
AbstractList •Two preventive replacement models are proposed for systems with two dependent parts.•Degradation and economic dependence between the two parts is considered.•The long-run average cost is derived by the technique of semi-regenerative process.•The optimal policy is derived for each model to minimize the long-run average cost.•Some insights are gained based on the sensitivity analysis of cost parameters. In many engineering systems, except for the critical parts fulfilling the main functions, there exist some parts equipped to protect the critical parts and enhance their reliabilities. Failures of these protective parts (named as auxiliary parts) do not halt the system directly like the critical parts. Dependence between the critical and auxiliary parts is commonly observed but has seen limited research. In this paper, we study systems with a critical subsystem and a protective auxiliary subsystem subject to degradation and economic dependence. For such systems, two preventive replacement models are presented. Model I allows the two subsystems to be replaced separately while Model II provides a joint replacement strategy. The long-run average cost of the system is derived by the technique of semi-regenerative process. Thereafter, the optimization problem is formulated with the objective of determining the optimal inspection period and preventive replacement thresholds that minimize the long-run average cost of each model. A numerical study of a boring tool equipped with a damper as the auxiliary subsystem is provided to demonstrate the proposed method. Finally, sensitivity analysis on the cost parameters is conducted, based on which the two proposed maintenance models are compared and their application conditions are discussed.
In many engineering systems, except for the critical parts fulfilling the main functions, there exist some parts equipped to protect the critical parts and enhance their reliabilities. Failures of these protective parts (named as auxiliary parts) do not halt the system directly like the critical parts. Dependence between the critical and auxiliary parts is commonly observed but has seen limited research. In this paper, we study systems with a critical subsystem and a protective auxiliary subsystem subject to degradation and economic dependence. For such systems, two preventive replacement models are presented. Model I allows the two subsystems to be replaced separately while Model II provides a joint replacement strategy. The long-run average cost of the system is derived by the technique of semi-regenerative process. Thereafter, the optimization problem is formulated with the objective of determining the optimal inspection period and preventive replacement thresholds that minimize the long-run average cost of each model. A numerical study of a boring tool equipped with a damper as the auxiliary subsystem is provided to demonstrate the proposed method. Finally, sensitivity analysis on the cost parameters is conducted, based on which the two proposed maintenance models are compared and their application conditions are discussed.
ArticleNumber 107144
Author Shen, Jingyuan
Hu, Jiawen
Ma, Yizhong
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Keywords Long-run average cost
Protective auxiliary subsystem
Semi-regenerative process
Degradation dependence
Preventive replacement
Language English
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Snippet •Two preventive replacement models are proposed for systems with two dependent parts.•Degradation and economic dependence between the two parts is...
In many engineering systems, except for the critical parts fulfilling the main functions, there exist some parts equipped to protect the critical parts and...
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SubjectTerms Boring tools
Cost analysis
Degradation
Degradation dependence
Dependence
Economic models
Economics
Inspection
Long-run average cost
Optimization
Parameter sensitivity
Preventive replacement
Protective auxiliary subsystem
Reliability engineering
Semi-regenerative process
Sensitivity analysis
Subsystems
Title Two preventive replacement strategies for systems with protective auxiliary parts subject to degradation and economic dependence
URI https://dx.doi.org/10.1016/j.ress.2020.107144
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