Journal of Shanghai Jiao Tong University (Science) ›› 2018, Vol. 23 ›› Issue (6): 791-797.doi: 10.1007/s12204-018-1985-y
Lü Yi (吕燚), ZHANG Yun (章云)
出版日期:
2018-12-01
发布日期:
2018-12-07
通讯作者:
Lü Yi (吕燚)
E-mail:lvyi913001@163.com
Lü Yi (吕燚), ZHANG Yun (章云)
Online:
2018-12-01
Published:
2018-12-07
Contact:
Lü Yi (吕燚)
E-mail:lvyi913001@163.com
摘要: Performance degradation and random shock are commonly regarded as two dependent competing risks for system failures. One method based on effective service age is proposed to jointly model the cumulative effect of random shock and system degradation, and the reliability model of degradation system under Nonhomogeneous Poisson processes (NHPP) shocks is derived. Under the assumption that preventive maintenance (PM) is imperfective and the corrective maintenance (CM) is minimal repair, one maintenance policy which combines PM and CM is presented. Moreover, the two decision variables, PM interval and the number of PMs before replacement, are determined by a multi-objective maintenance optimization method which simultaneously maximizes the system availability and minimizes the system long-run expect cost rate. Finally, the performance of the proposed maintenance optimization policy is demonstrated via a numerical example.
中图分类号:
Lü Yi (吕燚), ZHANG Yun (章云). Reliability Modeling and Maintenance Policy Optimization for Deteriorating System Under Random Shock[J]. Journal of Shanghai Jiao Tong University (Science), 2018, 23(6): 791-797.
Lü Yi (吕燚), ZHANG Yun (章云). Reliability Modeling and Maintenance Policy Optimization for Deteriorating System Under Random Shock[J]. Journal of Shanghai Jiao Tong University (Science), 2018, 23(6): 791-797.
[1] | VAN NOORTWIJK J M. A survey of the applicationof gamma processes in maintenance [J]. Reliability Engineering& System Safety, 2009, 94(1): 2-21. |
[2] | BARKER C T, NEWBY M J. Optimal non-periodicinspection for a multivariate degradation model [J].Reliability Engineering & System Safety, 2009, 94(1):33-43. |
[3] | HUYNH K T, BARROS A, BERENGUER C, et al. Aperiodic inspection and replacement policy for systemssubject to competing failure modes due to degradationand traumatic events [J]. Reliability Engineering& System Safety, 2011, 96(4): 497-508. |
[4] | CHA J H, FINKELSTEIN M. On a terminating shockprocess with independent wear increments [J]. Journalof Applied Probability, 2009, 46(2): 353-362. |
[5] | WANG Y, PHAM H. A multi-objective optimization ofimperfect preventive maintenance policy for dependentcompeting risk systems with hidden failure [J]. IEEETransactions on Reliability, 2011, 60(4): 770-781. |
[6] | JIANG L, FENG Q, COIT DW. Reliability and maintenancemodeling for dependent competing failure processeswith shifting failure thresholds [J]. IEEE Transactionson Reliability, 2012, 61(4): 932-948. |
[7] | PENG H, FENG Q, and COIT D W. Reliability andmaintenance modeling for systems subject to multipledependent competing failure processes [J]. IIE Transactions,2011, 43(1): 12-22. |
[8] | SONG S, COIT D W, FENG Q, et al. Reliabilityanalysis for multi-component systems subject to multipledependent competing failure processes [J]. IEEETransactions on Reliability, 2014, 63(1): 331-345. |
[9] | SHEU S H, ZHANG Z G. An optimal age replacementpolicy for multi-state systems [J]. IEEE Transactionson Reliability, 2013, 62(3): 722-735. |
[10] | LIU Y, HUANG H Z. Optimal replacement policy formulti-state system under imperfect maintenance [J].IEEE Transaction on Reliability, 2010, 59(3): 483-495. |
[11] | CHENG C Y, ZHAO X F, CHEN M, et al. A Failurerate-reduction periodic preventive maintenance modelwith delayed initial time in a finite time period[J]. Quality Technology & Quantitative Management,2014, 11(3): 245-254. |
[12] | CHENG C Y. The near-optimal preventive maintenancepolicies for a repairable system with a finite lifetime by using simulation methods [J], Journal of Computers,2011, 6(3): 548-555. |
[13] | HUANG H Z, QU J, ZUO M J. Genetic-algorithmbasedoptimal apportionment of reliability and redundancyunder multiple objectives [J]. IIE Transactions,2009, 41(4): 287-298. |
[14] | SAHOO L, BHUNIA A K, KAPUR P K. Genetic algorithmbased multi-objective reliability optimization ininterval environment [J]. Computers & Industrial Engineering,2011, 62(1): 152-160. |
[15] | TORRES-ECHEVERRIA A C, MARTORELL S,THOMPSON H A. Multi-objective optimization of designand testing of safety instrumented systems withMooN voting architectures using a genetic algorithm[J]. Reliability Engineering & System Safety, 2012,106: 45-60. |
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