Optimal data pooling for shared learning in maintenance operations

We study optimal data pooling for shared learning in two common maintenance operations: condition-based maintenance and spare parts management. We consider systems subject to Poisson input – the degradation or demand process – that are coupled through an unknown rate. Decision problems for these sys...

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Published inOperations research letters Vol. 52; p. 107056
Main Authors Drent, Collin, Drent, Melvin, van Houtum, Geert-Jan
Format Journal Article
LanguageEnglish
Published Elsevier B.V 01.01.2024
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Online AccessGet full text
ISSN0167-6377
1872-7468
1872-7468
DOI10.1016/j.orl.2023.11.009

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Abstract We study optimal data pooling for shared learning in two common maintenance operations: condition-based maintenance and spare parts management. We consider systems subject to Poisson input – the degradation or demand process – that are coupled through an unknown rate. Decision problems for these systems are high-dimensional Markov decision processes (MDPs) and are thus notoriously difficult to solve. We present a decomposition result that reduces such an MDP to two-dimensional MDPs, enabling structural analyses and computations. Leveraging this decomposition, we (i) show that pooling data can lead to significant cost reductions compared to not pooling, and (ii) prove that the optimal policy for the condition-based maintenance problem is a control limit policy, while for the spare parts management problem, it is an order-up-to level policy, both dependent on the pooled data.
AbstractList We study optimal data pooling for shared learning in two common maintenance operations: condition-based maintenance and spare parts management. We consider systems subject to Poisson input – the degradation or demand process – that are coupled through an unknown rate. Decision problems for these systems are high-dimensional Markov decision processes (MDPs) and are thus notoriously difficult to solve. We present a decomposition result that reduces such an MDP to two-dimensional MDPs, enabling structural analyses and computations. Leveraging this decomposition, we (i) show that pooling data can lead to significant cost reductions compared to not pooling, and (ii) prove that the optimal policy for the condition-based maintenance problem is a control limit policy, while for the spare parts management problem, it is an order-up-to level policy, both dependent on the pooled data.
ArticleNumber 107056
Author van Houtum, Geert-Jan
Drent, Collin
Drent, Melvin
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crossref_primary_10_1016_j_orl_2024_107093
crossref_primary_10_1016_j_ejor_2024_09_014
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10.1016/S0377-2217(02)00837-8
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Keywords Spare parts
Data pooling
Condition-based maintenance
Bayesian learning
Optimal policy
Language English
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Snippet We study optimal data pooling for shared learning in two common maintenance operations: condition-based maintenance and spare parts management. We consider...
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StartPage 107056
SubjectTerms Bayesian learning
Condition-based maintenance
Data pooling
Optimal policy
Spare parts
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Title Optimal data pooling for shared learning in maintenance operations
URI https://dx.doi.org/10.1016/j.orl.2023.11.009
https://research.tue.nl/en/publications/95b02a7b-6cc1-49d9-b5f2-905cd17cdb63
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