Reliability and maintenance modeling for systems subject to multiple dependent competing failure processes

For complex systems that experience Multiple Dependent Competing Failure Processes (MDCFP), the dependency among the failure processes presents challenging issues in reliability modeling. This article, develops reliability models and preventive maintenance policies for systems subject to MDCFP. Spec...

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Published inIIE transactions Vol. 43; no. 1; pp. 12 - 22
Main Authors Peng, Hao, Feng, Qianmei, Coit, David W.
Format Journal Article
LanguageEnglish
Published Norcross Taylor & Francis Group 01.01.2011
Taylor & Francis Ltd
Subjects
Online AccessGet full text
ISSN0740-817X
2472-5854
1545-8830
2472-5862
DOI10.1080/0740817X.2010.491502

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Abstract For complex systems that experience Multiple Dependent Competing Failure Processes (MDCFP), the dependency among the failure processes presents challenging issues in reliability modeling. This article, develops reliability models and preventive maintenance policies for systems subject to MDCFP. Specifically, two dependent/correlated failure processes are considered: soft failures caused jointly by continuous smooth degradation and additional abrupt degradation damage due to a shock process and catastrophic failures caused by an abrupt and sudden stress from the same shock process. A general reliability model is developed based on degradation and random shock modeling (i.e., extreme and cumulative shock models), which is then extended to a specific model for a linear degradation path and normally distributed shock load sizes and damage sizes. A preventive maintenance policy using periodic inspection is also developed by minimizing the average long-run maintenance cost rate. The developed reliability and maintenance models are demonstrated for a micro-electro-mechanical systems application example. These models can also be applied directly or customized for other complex systems that experience multiple dependent competing failure processes.
AbstractList For complex systems that experience Multiple Dependent Competing Failure Processes (MDCFP), the dependency among the failure processes presents challenging issues in reliability modeling. This article, develops reliability models and preventive maintenance policies for systems subject to MDCFP. Specifically, two dependent/correlated failure processes are considered: soft failures caused jointly by continuous smooth degradation and additional abrupt degradation damage due to a shock process and catastrophic failures caused by an abrupt and sudden stress from the same shock process. A general reliability model is developed based on degradation and random shock modeling (i.e., extreme and cumulative shock models), which is then extended to a specific model for a linear degradation path and normally distributed shock load sizes and damage sizes. A preventive maintenance policy using periodic inspection is also developed by minimizing the average long-run maintenance cost rate. The developed reliability and maintenance models are demonstrated for a micro-electro-mechanical systems application example. These models can also be applied directly or customized for other complex systems that experience multiple dependent competing failure processes.
For complex systems that experience Multiple Dependent Competing Failure Processes (MDCFP), the dependency among the failure processes presents challenging issues in reliability modeling. This article, develops reliability models and preventive maintenance policies for systems subject to MDCFP. Specifically, two dependent/correlated failure processes are considered: soft failures caused jointly by continuous smooth degradation and additional abrupt degradation damage due to a shock process and catastrophic failures caused by an abrupt and sudden stress from the same shock process. A general reliability model is developed based on degradation and random shock modeling (i.e., extreme and cumulative shock models), which is then extended to a specific model for a linear degradation path and normally distributed shock load sizes and damage sizes. A preventive maintenance policy using periodic inspection is also developed by minimizing the average long-run maintenance cost rate. The developed reliability and maintenance models are demonstrated for a micro-electro-mechanical systems application example. These models can also be applied directly or customized for other complex systems that experience multiple dependent competing failure processes. [PUBLICATION ABSTRACT]
Author Feng, Qianmei
Peng, Hao
Coit, David W.
Author_xml – sequence: 1
  givenname: Hao
  surname: Peng
  fullname: Peng, Hao
  organization: Department of Industrial Engineering , University of Houston
– sequence: 2
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  surname: Feng
  fullname: Feng, Qianmei
  organization: Department of Industrial Engineering , University of Houston
– sequence: 3
  givenname: David W.
  surname: Coit
  fullname: Coit, David W.
  organization: Department of Industrial and Systems Engineering , Rutgers University
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Snippet For complex systems that experience Multiple Dependent Competing Failure Processes (MDCFP), the dependency among the failure processes presents challenging...
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SubjectTerms Complex systems
Cost reduction
Damage
Degradation
Failure
Failure analysis
Inspection
Maintenance
Mathematical models
micro-electro-mechanical systems reliability
Multiple dependent competing failure processes
Policies
Preventive maintenance
random shocks
Reliability
Studies
Title Reliability and maintenance modeling for systems subject to multiple dependent competing failure processes
URI https://www.tandfonline.com/doi/abs/10.1080/0740817X.2010.491502
https://www.proquest.com/docview/821993434
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Volume 43
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