固体力学与飞行器总体设计

考虑多资源约束的多任务条件下装备选择性维修决策

  • 马维宁 ,
  • 胡起伟 ,
  • 贾希胜
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  • 陆军工程大学 石家庄校区,石家庄 050003
.E-mail: hu_qiwei@126.com

收稿日期: 2022-04-26

  修回日期: 2022-05-26

  录用日期: 2022-06-21

  网络出版日期: 2022-06-24

基金资助

全军军事类研究生资助重点课题(JY2020B085)

Selective maintenance decision for equipment under multi-mission setting considering multiple resource constraints

  • Weining MA ,
  • Qiwei HU ,
  • Xisheng JIA
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  • Shijiazhuang Campus,Army Engineering University of PLA,Shijiazhuang 050003,China
E-mail: hu_qiwei@126.com

Received date: 2022-04-26

  Revised date: 2022-05-26

  Accepted date: 2022-06-21

  Online published: 2022-06-24

Supported by

Postgraduate Funing Project of PLA(JY2020B085)

摘要

战场环境下任务间隔时间有限,如何在较短时间内恢复装备战斗力、提高任务可靠度是装备维修决策的重要问题。以装备连续执行多个任务为背景,综合考虑任务可靠度要求、可用度要求、维修人员技能水平等因素,以多任务间隔时间之和最小化为优化目标,建立装备选择性维修决策模型,采用遗传算法进行优化求解。结合算例,分析了任务可靠度要求、可用度要求、维修人员技能水平等因素对优化结果的影响。研究结果表明,所建模型和求解算法有效,能够为战场环境下装备维修决策问题提供理论指导和技术支持。

本文引用格式

马维宁 , 胡起伟 , 贾希胜 . 考虑多资源约束的多任务条件下装备选择性维修决策[J]. 航空学报, 2025 , 46(2) : 227327 -227327 . DOI: 10.7527/S1000-6893.2022.27327

Abstract

In the battlefield environment, the mission interval is limited. The quick restoration of equipment combat power and improvement of mission reliability is an important issue in equipment maintenance decision-making. Taking equipment continuously performing multiple missions as the background, and comprehensively considering factors such as mission reliability requirement, availability requirement and the skill levels of maintenance personnel, we establish an equipment selective maintenance decision-making model with the optimization goal of minimizing the sum of the multi-mission interval time, and use the genetic algorithm to obtain the solution. Combined with a numerical example, the influences of factors such as mission reliability requirement, availability requirement and the skill levels of maintenance personnel on the optimization results are analyzed. The results show that the established model and the solution algorithm are effective, which can provide theoretical guidance and technical support for equipment maintenance decision-making in the battlefield environment.

参考文献

1 殷双斌, 周林, 赵蒙, 等. 基于维修效果的退化装备更换维修决策研究[J]. 军事运筹与系统工程202135(3): 36-42.
  YIN S B, ZHOU L, ZHAO M, et al. Research on maintenance decision of degraded equipment replacement based on maintenance effect[J]. Military Operations Research and Systems Engineering202135(3): 36-42 (in Chinese).
2 王少华, 张仕新, 李勇, 等. 不完全维修条件下复杂系统的选择性维修决策方法研究[J]. 兵工学报201839(6): 1215-1224.
  WANG S H, ZHANG S X, LI Y, et al. Research on selective maintenance decision-making method of complex system considering imperfect maintenance[J]. Acta Armamentarii201839(6): 1215-1224 (in Chinese).
3 RICE W F, CASSADY C R, NACHLAS J A. Optimal maintenance plans under limited maintenance time[C]∥Proceedings of the Seventh Industrial Engineering Research Conference, 1998.
4 DOYEN L, GAUDOIN O. Classes of imperfect repair models based on reduction of failure intensity or virtual age[J]. Reliability Engineering & System Safety200484(1): 45-56.
5 王海朋, 段富海, 马骏. 复杂系统的选择性维修模型和求解算法[J]. 北京航空航天大学学报202046(12): 2264-2273.
  WANG H P, DUAN F H, MA J. Selective maintenance model and its solving algorithm for complex system[J]. Journal of Beijing University of Aeronautics and Astronautics202046(12): 2264-2273 (in Chinese).
6 LIU Y, HUANG H Z. Optimal selective maintenance strategy for multi-state systems under imperfect maintenance[J]. IEEE Transactions on Reliability201059(2): 356-367.
7 PANDEY M, ZUO M J, MOGHADDASS R. Selective maintenance modeling for a multistate system with multistate components under imperfect maintenance[J]. IIE Transactions201345(11): 1221-1234.
8 曹文斌, 贾希胜, 胡起伟. 共因失效条件下多状态系统选择性维修优化[J]. 航空学报201839(2): 221556.
  CAO W B, JIA X S, HU Q W. Selective maintenance optimization for multi-state systems subject to common cause failures[J]. Acta Aeronautica et Astronautica Sinica201839(2): 221556 (in Chinese).
9 LISNIANSKI A, LEVITIN G. Multi-state system reliability[M]. Singapore: World Scientific, 2003.
10 VU H C, DO P, BARROS A, et al. Maintenance grouping strategy for multi-component systems with dynamic contexts[J]. Reliability Engineering & System Safety2014132: 233-249.
11 MAAROUFI G, CHELBI A, REZG N. Optimal selective renewal policy for systems subject to propagated failures with global effect and failure isolation phenomena[J]. Reliability Engineering & System Safety2013114: 61-70.
12 FAN M F, ZENG Z G, ZIO E, et al. Modeling dependent competing failure processes with degradation-shock dependence[J]. Reliability Engineering & System Safety2017165: 422-430.
13 MA W N, LI H, YANG Z Y, et al. Maintenance optimization for two-component series systems with degradation dependence[J]. IEEE Access20219: 48174-48184.
14 GUPTA N, ALI I, BARI A. Fuzzy goal programming approach in selective maintenance reliability model[J]. Pakistan Journal of Statistics and Operation Research20139(3): 321.
15 ALI I, SUHAIB HASAN S. Bi-criteria optimization technique in stochastic system maintenance allocation problem[J]. American Journal of Operations Research20133(1): 17-29.
16 KHATAB A, DIALLO C, VENKATADRI U, et al. Optimization of the joint selective maintenance and repairperson assignment problem under imperfect maintenance[J]. Computers & Industrial Engineering2018125: 413-422.
17 DIALLO C, KHATAB A, VENKATADRI U, et al. A joint selective maintenance and multiple repairperson assignment problem[C]∥Proceedings of the 7th International Conference on Industrial Engineering and Systems Management, 2017.
18 DIALLO C, VENKATADRI U, KHATAB A, et al. Optimal joint selective imperfect maintenance and multiple repairpersons assignment strategy for complex multicomponent systems[J]. International Journal of Production Research201957(13): 4098-4117.
19 CHAABANE K, KHATAB A, DIALLO C, et al. Integrated imperfect multimission selective maintenance and repairpersons assignment problem[J]. Reliability Engineering & System Safety2020199: 106895.
20 JIANG T, LIU Y. Selective maintenance strategy for systems executing multiple consecutive missions with uncertainty[J]. Reliability Engineering & System Safety2020193: 106632.
21 刘宇. 多状态复杂系统可靠性建模及维修决策[D]. 成都: 电子科技大学, 2010.
  LIU Y. Reliability modeling and maintenance decision of multi-state complex system[D]. Chengdu: University of Electronic Science and Technology of China, 2010 (in Chinese).
22 王少华, 张仕新, 李勇, 等. 有限任务间隔时间内的装备选择性维修决策研究[J]. 系统工程与电子技术201840(11): 2611-2616.
  WANG S H, ZHANG S X, LI Y, et al. Research on selective maintenance decision-making of equipment given finite mission time intervals[J]. Systems Engineering and Electronics201840(11): 2611-2616 (in Chinese).
23 贾希胜. 以可靠性为中心的维修决策模型[M]. 北京: 国防工业出版社, 2007.
  JIA X S. The decision models for reliability centered maintenance[M]. Beijing: National Defense Industry Press, 2007 (in Chinese).
24 LEVITIN G. Genetic algorithms in reliability engineering[J]. Reliability Engineering & System Safety200691(9): 975-976.
25 LEVITIN G, LISNIANSKI A. Optimization of imperfect preventive maintenance for multi-state systems[J]. Reliability Engineering & System Safety200067(2): 193-203.
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