A tiered modelling approach for condition-based maintenance of industrial assets with load sharing interaction and fault propagation
This paper considers the problem of condition-based maintenance optimization for complex industrial assets involving load sharing interaction and fault propagation among their components using a two-tiered approach. The upper layer represents the deterioration and failure at the asset level and uses...
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Veröffentlicht in: | IMA journal of management mathematics 2015-04, Vol.26 (2), p.125-144 |
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creator | Liang, Z. Parlikad, A. K. |
description | This paper considers the problem of condition-based maintenance optimization for complex industrial assets involving load sharing interaction and fault propagation among their components using a two-tiered approach. The upper layer represents the deterioration and failure at the asset level and uses a continuous-time Markov chain to calculate the optimal inspection interval and maintenance threshold. The lower layer models the load sharing interaction and fault propagation, and in turn calculates the deterioration rates and failure rates to be used in the upper layer. We derive a partitioning rule to transform the lower layer model into the upper layer model's format. Hence, we are able to reduce the size of state space and circumvent the state space explosion problem. |
doi_str_mv | 10.1093/imaman/dpu013 |
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K.</creatorcontrib><title>A tiered modelling approach for condition-based maintenance of industrial assets with load sharing interaction and fault propagation</title><title>IMA journal of management mathematics</title><description>This paper considers the problem of condition-based maintenance optimization for complex industrial assets involving load sharing interaction and fault propagation among their components using a two-tiered approach. The upper layer represents the deterioration and failure at the asset level and uses a continuous-time Markov chain to calculate the optimal inspection interval and maintenance threshold. The lower layer models the load sharing interaction and fault propagation, and in turn calculates the deterioration rates and failure rates to be used in the upper layer. We derive a partitioning rule to transform the lower layer model into the upper layer model's format. Hence, we are able to reduce the size of state space and circumvent the state space explosion problem.</description><subject>Deterioration</subject><subject>Explosions</subject><subject>Faults</subject><subject>Inspection</subject><subject>Load sharing</subject><subject>Maintenance</subject><subject>Mathematical models</subject><subject>Optimization</subject><issn>1471-678X</issn><issn>0265-0754</issn><issn>1471-6798</issn><fulltext>true</fulltext><rsrctype>article</rsrctype><creationdate>2015</creationdate><recordtype>article</recordtype><recordid>eNo9kM1LxDAQxYMouK4evefopW6yaZP2uCx-geBFwVuZTSa7kW5SkxTx7h9uS8XTDMOb93g_Qq45u-WsESt3hCP4lekHxsUJWfBS8UKqpj793-v3c3KR0gdjvKkquSA_G5odRjT0GAx2nfN7Cn0fA-gDtSFSHbxx2QVf7CBNMnA-owevkQZLnTdDytFBRyElzIl-uXygXQBD0wHi5Dc9RNCTCQVvqIWhy3TM6GEP0_WSnFnoEl79zSV5u7973T4Wzy8PT9vNc6FFyXIhRQ272tQWBK92SlkhrWFYcVaXco1gKuRS20pCswZRoawVKmGM4spoaJhYkpvZd8z-HDDl9uiSHluDxzCkljesXHPGpBilxSzVMaQU0bZ9HPnG75azdqLdzrTbmbb4BYp2eMM</recordid><startdate>20150401</startdate><enddate>20150401</enddate><creator>Liang, Z.</creator><creator>Parlikad, A. 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K.</au><format>journal</format><genre>article</genre><ristype>JOUR</ristype><atitle>A tiered modelling approach for condition-based maintenance of industrial assets with load sharing interaction and fault propagation</atitle><jtitle>IMA journal of management mathematics</jtitle><date>2015-04-01</date><risdate>2015</risdate><volume>26</volume><issue>2</issue><spage>125</spage><epage>144</epage><pages>125-144</pages><issn>1471-678X</issn><issn>0265-0754</issn><eissn>1471-6798</eissn><abstract>This paper considers the problem of condition-based maintenance optimization for complex industrial assets involving load sharing interaction and fault propagation among their components using a two-tiered approach. The upper layer represents the deterioration and failure at the asset level and uses a continuous-time Markov chain to calculate the optimal inspection interval and maintenance threshold. The lower layer models the load sharing interaction and fault propagation, and in turn calculates the deterioration rates and failure rates to be used in the upper layer. We derive a partitioning rule to transform the lower layer model into the upper layer model's format. Hence, we are able to reduce the size of state space and circumvent the state space explosion problem.</abstract><doi>10.1093/imaman/dpu013</doi><tpages>20</tpages><oa>free_for_read</oa></addata></record> |
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ispartof | IMA journal of management mathematics, 2015-04, Vol.26 (2), p.125-144 |
issn | 1471-678X 0265-0754 1471-6798 |
language | eng |
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source | Oxford University Press Journals All Titles (1996-Current) |
subjects | Deterioration Explosions Faults Inspection Load sharing Maintenance Mathematical models Optimization |
title | A tiered modelling approach for condition-based maintenance of industrial assets with load sharing interaction and fault propagation |
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