Systems Engineering and Electronics ›› 2023, Vol. 45 ›› Issue (1): 291-301.doi: 10.12305/j.issn.1001-506X.2023.01.34
• Reliability • Previous Articles
Fei ZHAO1,2,*, Xin LI1, Jian ZHANG3
Received:
2022-02-14
Online:
2023-01-01
Published:
2023-01-03
Contact:
Fei ZHAO
CLC Number:
Fei ZHAO, Xin LI, Jian ZHANG. Joint policy optimization of condition-based maintenance and spare ordering considering competing failure[J]. Systems Engineering and Electronics, 2023, 45(1): 291-301.
1 |
WANG C N , XING L D , WENG J . A new combinatorial model for deterministic competing failure analysis[J]. Quality and Reliability Engineering International, 2020, 36 (5): 1475- 1493.
doi: 10.1002/qre.2639 |
2 |
WANG X A , LI L , CHANG M X , et al. Reliability modeling for competing failure processes with shifting failure thresholds under severe product working conditions[J]. Applied Mathema-tical Modelling, 2021, 89, 1747- 1763.
doi: 10.1016/j.apm.2020.08.032 |
3 |
JIN C X , RAN Y , WANG Z C , et al. Reliability analysis of gear rotation meta-action unit based on Weibull and inverse Gaussian competing failure process[J]. Engineering Failure Analysis, 2020, 117, 104953.
doi: 10.1016/j.engfailanal.2020.104953 |
4 | ZHANG Y J , SHEN J Y , MA Y Z . An optimal preventive maintenance policy for a two-stage competing-risk system with hidden failures[J]. Computers & Industrial Engineering, 2021, 154, 107135. |
5 |
王强, 贾希胜, 程中华, 等. 战时基于竞争失效的装备系统可靠性建模与预防性维修策略[J]. 系统工程与电子技术, 2019, 41 (10): 2392- 2400.
doi: 10.3969/j.issn.1001-506X.2019.10.32 |
WANG Q , JIA X S , CHENG Z H , et al. Reliability modeling and preventive maintenance strategy for equipment system based on competing failure processes in war[J]. Systems Engineering and Electronics, 2019, 41 (10): 2392- 2400.
doi: 10.3969/j.issn.1001-506X.2019.10.32 |
|
6 |
GAN S Y , SONG Z F . Reliability evaluation by a dependent competing failure model including a time-varying rate for sudden degradation increments[J]. Arabian Journal for Science and Engineering, 2021, 46 (10): 10137- 10152.
doi: 10.1007/s13369-021-05438-5 |
7 |
YOUSEF N , COIT D W , ZHU X Y . Dynamic maintenance policy for systems with repairable components subject to mutually dependent competing failure processes[J]. Computers and Industrial Engineering, 2020, 143, 106398.
doi: 10.1016/j.cie.2020.106398 |
8 | KONG D J , QIN C W , HE Y , et al. Sensor-based calibrations to improve reliability of systems subject to multiple dependent competing failure processes[J]. Reliability Engineering & System Safety, 2017, 160, 101- 113. |
9 |
LYU H , WANG S H , ZHANG X W . Reliability modeling for dependent competing failure processes with phase-type distribution considering changing degradation rate[J]. Eksploatacja i Niezawodnosc-Maintenance and Reliability, 2021, 23 (4): 627- 635.
doi: 10.17531/ein.2021.4.5 |
10 | NEZAKATI E , RAZMKHAH M . Reliability analysis of a load sharing k-out-of-n: F degradation system with dependent competing failures[J]. Reliability Engineering & System Safety, 2020, 203, 107076. |
11 | SUN F Q , LI H , CHENG Y Y , et al. Reliability analysis for a system experiencing dependent degradation processes and random shocks based on a nonlinear Wiener process model[J]. Reliability Engineering & System Safety, 2021, 215, 107906. |
12 |
BIAN L , WANG G J , LIU P . Reliability analysis for multi-component systems with interdependent competing failure processes[J]. Applied Mathematical Modelling, 2021, 94, 446- 459.
doi: 10.1016/j.apm.2021.01.009 |
13 |
RAHIMIKELARIJANI B , HAMIDI M , MOHASSEL A , et al. Imperfect condition-based maintenance strategy for a deteriorating rail track system with multiple competitive failure modes[J]. Journal of Transportation Engineering, Part A-Systems, 2020, 146 (9): 04020088.
doi: 10.1061/JTEPBS.0000412 |
14 | GUO C M , WANG W B , GUO B , et al. A maintenance optimization model for mission-oriented systems based on Wiener degradation[J]. Reliability Engineering & System Safety, 2013, 111, 183- 194. |
15 |
裴洪, 胡昌华, 司小胜, 等. 不完美维护下基于剩余寿命预测信息的设备维护决策模型[J]. 自动化学报, 2018, 44 (4): 719- 729.
doi: 10.16383/j.aas.2017.c160534 |
PEI H , HU C H , SI X S , et al. Remaining life prediction information-based maintenance decision model for equipment under imperfect maintenance[J]. Acta Automatica Sinica, 2018, 44 (4): 719- 729.
doi: 10.16383/j.aas.2017.c160534 |
|
16 |
HU C H , PEI H , WANG Z Q , et al. A new remaining useful life estimation method for equipment subjected to intervention of imperfect maintenance activities[J]. Chinese Journal of Aeronautics, 2018, 31 (3): 514- 528.
doi: 10.1016/j.cja.2018.01.009 |
17 | PEI H , SI X S , HU C H , et al. A multi-stage Wiener process-based prognostic model for equipment considering the influence of imperfect maintenance activities[J]. Journal of Intelligent & Fuzzy Systems, 2018, 34 (6): 3695- 3705. |
18 | CUI L R , WU B . Extended phase-type models for multistate competing risk systems[J]. Reliability Engineering & System Safety, 2018, 181, 1- 16. |
19 |
TANG J Y , CHEN C S , HUANG L . Reliability assessment mo-dels for dependent competing failure processes considering correlations between random shocks and degradations[J]. Quality and Reliability Engineering International, 2019, 35 (1): 179- 191.
doi: 10.1002/qre.2390 |
20 |
LI H Q , YUAN R , FU J . A reliability modeling for multi-component systems considering random shocks and multi-state degradation[J]. IEEE Access, 2019, 7, 168805- 168814.
doi: 10.1109/ACCESS.2019.2953483 |
21 |
LIU H L . Reliability and maintenance modeling for competing risk processes with Weibull inter-arrival shocks[J]. Applied Mathematical Modelling, 2019, 71, 194- 207.
doi: 10.1016/j.apm.2019.02.017 |
22 | RAFIEE K , FENG Q W , COIT D W . Reliability assessment of competing risks with generalized mixed shock models[J]. Reliability Engineering & System Safety, 2017, 159, 1- 11. |
23 | YANG L , ZHAO Y , PENG R , et al. Hybrid preventive maintenance of competing failures under random environment[J]. Reliabi-lity Engineering & System Safety, 2018, 174, 130- 140. |
24 | CHE H Y , ZENG S K , GUO J B , et al. Reliability modeling for dependent competing failure processes with mutually dependent degradation process and shock process[J]. Reliability Engineering & System Safety, 2018, 180, 168- 178. |
25 | AN Z W , SUN D M . Reliability modeling for systems subject to multiple dependent competing failure processes with shock loads above a certain level[J]. Reliability Engineering & System Safety, 2017, 157, 129- 138. |
26 | HAO S H , YANG J . Reliability analysis for dependent competing failure processes with changing degradation rate and hard failure threshold levels[J]. Computers & Industrial Engineering, 2018, 118, 340- 351. |
27 | 赵斐, 刘学娟. 考虑不完美维修的定期检测与备件策略联合优化[J]. 系统工程理论与实践, 2017, 37 (12): 3201- 3214. |
ZHAO F , LIU X J . Joint optimization of periodical inspection and spare parts policies considering imperfect maintenance[J]. Systems Engineering-Theory and Practice, 2017, 37 (12): 3201- 3214. | |
28 | ZHAO F , XIE F F , SHI C H , et al. A joint inspection-based preventive maintenance and spare ordering optimization policy using a three-stage failure process[J]. Complexity, 2017, 2017, 8319485. |
29 | ZHAO F , LIU X J , PENG R , et al. Joint optimization of inspection and spare ordering policy with multi-level defect information[J]. Computers and Industrial Engineering, 2020, 139, 106205. |
30 | 赵斐, 康建设, 王雷震, 等. 考虑非周期检测的视情维修与备件订购联合策略优化[J]. 运筹与管理, 2021, 30 (9): 31- 37. |
ZHAO F , KANG J S , WANG L Z , et al. Joint policy optimization of condition-based maintenance and spare ordering considering non-periodic inspection[J]. Operations Research and Management Science, 2021, 30 (9): 31- 37. | |
31 | GUO C M , WANG W B , GUO B , et al. A maintenance optimization model for mission-oriented systems based on Wiener degradation[J]. Reliability Engineering & System Safety, 2013, 111, 183- 194. |
[1] | Jingfeng LI, Yunxiang CHEN, Huachun XIANG, Jian WANG. Joint optimization of condition-based maintenance and spare part inventory for multi-component system considering random shock effect [J]. Systems Engineering and Electronics, 2022, 44(3): 875-883. |
[2] | Yunxiang CHEN, Jingfeng LI, Huachun XIANG, Hengnian LI. A CBM optimization model for mission-oriented system based on inverse Gaussian degradation process [J]. Systems Engineering and Electronics, 2022, 44(1): 338-346. |
[3] | Zezhou WANG, Yunxiang CHEN, Zhongyi CAI, Huachun XIANG, Lili WANG. Equipment remaining useful lifetime online prediction based on accelerated degradation modeling with the proportion relationship [J]. Systems Engineering and Electronics, 2021, 43(2): 584-592. |
[4] | Zhongyi CAI, Zezhou WANG, Yunxiang CHEN, Huachun XIANG, Lili WANG. Adaptive prediction of remaining useful lifetime for the single airborne equipment based on the proportional accelerated degradation modeling [J]. Systems Engineering and Electronics, 2021, 43(11): 3405-3412. |
[5] | Gen LIU, Zhihua WANG, Huaiyuan QU, Lu LI, Chengrui LIU. Constant stress accelerated degradation test design based on multivariate optimization [J]. Systems Engineering and Electronics, 2021, 43(1): 267-271. |
[6] | Zhongyi CAI, Zezhou WANG, Xiaofeng ZHANG, Yan LI. Online prediction method of remaining useful lifetime for implicit nonlinear degradation equipment [J]. Systems Engineering and Electronics, 2020, 42(6): 1410-1416. |
[7] | Ao ZHANG, Zhihua WANG, Zhenping ZHAO, Xuguo QIN, Qiong WU, Chengrui LIU. Two-phase nonlinear Wiener process for degradation modeling and reliability analysis [J]. Systems Engineering and Electronics, 2020, 42(4): 954-959. |
[8] | Chuang CHEN, Ningyun LU, Bin JIANG, Yin XING. Optimization of condition-based maintenance strategy for single-unit accelerated degrading systems [J]. Systems Engineering and Electronics, 2020, 42(3): 613-619. |
[9] | WANG Zezhou, CHEN Yunxiang, CAI Zhongyi, XIANG Huachun, LUO Chengkun. Real-time prediction of remaining useful lifetime for equipment with random failure threshold [J]. Systems Engineering and Electronics, 2019, 41(5): 1162-1168. |
[10] | CHEN Zhen, PAN Hao, PAN Ershun. Differentiated design of constant stress accelerated degradation test [J]. Systems Engineering and Electronics, 2019, 41(4): 929-936. |
[11] | GAI Bingliang, TENG Kenan, TANG Jinguo, WANG Haowei, SUN Yuan. Reliability analysis for bivariate degradation process based on Mahalanobis distance [J]. Systems Engineering and Electronics, 2019, 41(3): 686-692. |
[12] | HUANG Liang, LIU Junqiang, GONG Yingjie. Residual lifetime prediction of aeroengines based on the consistency test [J]. Systems Engineering and Electronics, 2018, 40(12): 2736-2742. |
[13] | CAI Zhongyi, GUO Jiansheng, CHEN Yunxiang, DONG Xiaoxiong, XIANG Huachun. Remaining lifetime online prediction based on step-stress accelerated degradation modeling [J]. Systems Engineering and Electronics, 2018, 40(11): 2605-. |
[14] | HUANG Wenping, ZHOU Jinglun, NING Juhong, JIN Guang. Reliability model for competing failure with shift thresholds [J]. Systems Engineering and Electronics, 2017, 39(4): 941-946. |
[15] | ZHANG Yanjing, MA Yizhong, OUYANG Linhan, WANG Juan, LIU Lijun. Reliability modeling and maintenance strategy for a single-unit system based on competing failure processes [J]. Systems Engineering and Electronics, 2017, 39(11): 2623-2630. |
Viewed | ||||||
Full text |
|
|||||
Abstract |
|
|||||