Systems Engineering and Electronics ›› 2023, Vol. 46 ›› Issue (1): 237-244.doi: 10.12305/j.issn.1001-506X.2024.01.27
• Systems Engineering • Previous Articles
Songshi SHAO1, Haitao LIU2, Haojie YUAN2,*, Zhihua ZHANG1
Received:
2022-10-24
Online:
2023-12-28
Published:
2024-01-11
Contact:
Haojie YUAN
CLC Number:
Songshi SHAO, Haitao LIU, Haojie YUAN, Zhihua ZHANG. Simulation evaluation for mission success of multi-state system[J]. Systems Engineering and Electronics, 2023, 46(1): 237-244.
Table 1
Schematic diagram of the actual operating status of the system"
成功态 | 失败态 | |
1(启动, 备用, 备用) | 6(备用, 工作, 备用) | 11(故障, 启动, 故障) |
2(工作, 备用, 备用) | 7(故障, 故障, 工作) | 12(备用, 启动, 故障) |
3(故障, 启动, 工作) | 8(启动, 故障, 工作) | 13(故障, 故障, 故障) |
4(备用, 启动, 工作) | 9(工作, 故障, 备用) | 14(启动, 故障, 故障) |
5(故障, 工作, 备用) | 10(启动, 备用, 工作) | 15(启动, 备用, 故障) |
14 |
MACHOVEC D , SIEGEL H J , CROWDER J A , et al. Surveillance mission scheduling with unmanned aerial vehicles in dynamic heterogeneous environments[J]. The Journal of Supercomputing, 2023, 79, 13864- 13888.
doi: 10.1007/s11227-023-05225-z |
15 | 董学军, 武小悦, 陈英武. 基于Markov链互模拟的航天器发射任务可靠度模型[J]. 系统工程理论与实践, 2012, 32 (10): 2323- 2330. |
DONG X J , WU X Y , CHEN Y W . Mission reliability model of spacecraft launch based on bisimulation of continuous-time Markov processes[J]. System Engineering-Theory & Practice, 2012, 32 (10): 2323- 2330. | |
16 |
董岳, 于永利, 张柳, 等. 复杂系统使用任务完成概率模型[J]. 系统工程与电子技术, 2011, 33 (1): 94- 97.
doi: 10.3969/j.issn.1001-506X.2011.01.19 |
DONG Y , YU Y L , ZHANG L , et al. Usage mission completion probability model for complex systems[J]. Systems Engineering and Electronics, 2011, 33 (1): 94- 97.
doi: 10.3969/j.issn.1001-506X.2011.01.19 |
|
17 | LI Y , CUI L R , LIN C . Modeling and analysis for multi-state systems with discrete-time Markov regime switching[J]. Reliability Engineering & System Safety, 2017, 166, 41- 49. |
18 | LEVITIN G , XING L D , LUO L . Influence of failure propagation on mission abort policy in heterogeneous warm standby systems[J]. Reliability Engineering & Systems Safety, 2019, 183, 29- 38. |
19 | LEVITIN G , FINKELSTEIN M , DAI S Y . Redundancy optimization for series-parallel phased mission systems exposed to random shocks[J]. Reliability Engineering & System Safety, 2017, 167, 554- 560. |
20 | ERYILMAZ S . Dynamic assessment of multi-state systems using phase-type modeling[J]. Reliability Engineering & System Safety, 2015, 140, 71- 77. |
21 | LU J M , WU X Y . Reliability evaluation of generalized-mission systems with repairable components[J]. Reliability Engineering & System Safety, 2014, 121, 136- 145. |
22 | GEORAGE-WILLAMS H , PATELLI E . A hybrid load flow and evend driven simulation approach to multi-state system reliability evaluation[J]. Reliability Engineering & System Safety, 2016, 152, 351- 367. |
23 | XING L D , LEVITIN G . BDD-based reliability evaluation of phased-mission systems with internal /external common-cause failures[J]. Reliability Engineering & System Safety, 2013, 112, 145- 153. |
24 |
ZHAO J B , HOU P Y , CAI Z Q . Research of mission success importance for a multi-state repairable k-out-of-n system[J]. Advances in Mechanical Engineering, 2018, 10 (2)
doi: 10.1177/1687814018762208 |
25 | 刘芳, 郭波, 张涛, 等. 复杂武器系统任务成功概率求解方法[J]. 兵工学报, 2006, 27 (4): 721- 725. |
LIU F , GUO B , ZHANG T , et al. A solving process for mission success probability of complex weapon system[J]. Acta Armamentarii, 2006, 27 (4): 721- 725. | |
26 | 曹畔畔, 罗长远. 可修多阶段任务系统成功概率评估模型[J]. 系统工程, 2016, 34 (2): 138- 143. |
CAO P P , LUO C Y . Evaluation model of mission success pro-bability for repairable phased-mission systems[J]. Systems Engineering, 2016, 34 (2): 138- 143. | |
27 | LU J M , WU X Y . Reliability evaluation of generalized phased-mission systems with repairable components[J]. Reliability Engineering & System Safety, 2014, 121, 136- 145. |
28 | LU J M , WU X Y , LIU Y L , et al. Reliability analysis of large phased-mission systems with repairable components based on success-state sampling[J]. Reliability Engineering & System Safety, 2015, 142, 123- 133. |
29 | GREGORY L , MAXIM F , HUANG H Z . Optimal mission abort policies for multistate systems[J]. Reliability Engineering & System Safety, 2019, 19, 75- 81. |
30 | WU X , WU X Y . Extended object-oriented Petri net model for mission reliability simulation of repairable PMS with common cause failures[J]. Reliability Engineering & System Safety, 2015, 136, 109- 119. |
31 | WU X , WU X Y , BALAKRISHNAN N . Variance-based importance analysis measure for mission reliability of phased mission system[J]. Journal of Statistical Computer and Simulation, 2018, 88 (5): 841- 868. |
1 | 韩小孩, 张耀辉, 王少华, 等. 考虑维修工作的装备任务成功性评估方法[J]. 系统工程与电子技术, 2017, 39 (3): 687- 692. |
HAN X H , ZHANG Y H , WANG S H , et al. Evaluation of equipment's dependability taking maintenance into consideration[J]. Systems Engineering and Electronics, 2017, 39 (3): 687- 692. | |
2 | ZHAO J B , CAI Z Q , SI W T , et al. Mission success evaluation of repairable phased-mission systems with spare parts[J]. Computers & Industrial Engineering, 2019, 132, 248- 259. |
3 | LEVITIN G , XING L D , DAI Y S . Probabilities of mission success and system survival in multi-state systems with arbitrary structure[J]. Computers & Industrial Engineering, 2021, 161, 107597. |
4 | HUANG X Y, YIN D L. Research on mission success model of repairable voting system with RCCF and Markov process[C]//Proc. of the 3rd International Conference on Machine Learning, Big Data and Business Intelligence, 2021: 207-211. |
5 | LEVITIN G , XING L D , DAI Y S . Influence of storage on mission success probability of m-out-of-n standby systems with reusable elements[J]. Reliability Engineering & System Safety, 2021, 216, 107976. |
6 | ZHAO X , HE Z D , WU Y G , et al. Joint optimization of condition- based performance control and maintenance policies for mission- critical systems[J]. Reliability Engineering & System Safety, 2022, 226, 108655. |
7 |
ZHAO X F , JIA X J , CHEN M C , et al. Periodic and sequential inspection policies with mission failure probabilities[J]. Quality and Reliability Engineering International, 2022, 38 (4): 1539- 1557.
doi: 10.1002/qre.2868 |
8 |
YANG L , CHEN Y , QIU Q A , et al. Risk control of mission-critical systems: abort decision-makings integrating health and age conditions[J]. IEEE Trans.on Industrial Informatics, 2022, 18 (10): 6887- 6894.
doi: 10.1109/TII.2022.3141416 |
9 | ZHANG S G, LIU P Y, CHEN M Q, et al. Research on mission-oriented equipment maintenance program evaluation and optimization method[C]//Proc. of the Global Reliability and Prognostics and Health Management, 2022. |
10 | 张耀辉, 韩小孩, 王少华, 等. 装备任务成功性评估研究现状与展望[J]. 装甲兵工程学院学报, 2014, 28 (5): 1- 7. |
ZHANG Y H , HAN X H , WANG S H , et al. Research status and prospect of equipment mission dependability evaluation[J]. Journal of Ordnance Equipment Engineering, 2014, 28 (5): 1- 7. | |
11 | ZHAO J B , SI S B , CAI Z Q , et al. Mission success probability optimization for phased-mission systems with repairable component modules[J]. Reliability Engineering & System Safety, 2020, 195, 41- 52. |
12 | DUI H Y , ZHANG C , BAI G H , et al. Mission reliability modeling of UAV swarm and its structure optimization based on importance measure[J]. Reliability Engineering & System Safety, 2021, 215, 107879. |
13 |
YI K X , KOU G , GAO K Y , et al. Optimal allocation of multi-state elements in a sliding window system with phased missions[J]. Proceedings of the Institution of Mechanical Engineers, Part O: Journal of Risk and Reliability, 2021, 235 (1): 50- 62.
doi: 10.1177/1748006X20946165 |
32 | 吕建伟, 郭顺合, 徐一帆, 等. 基于多智能体仿真的舰船动力系统航渡任务成功性研究[J]. 系统工程与电子技术, 2019, 41 (8): 1896- 1902. |
LYU J W , GUO S H , XU Y F , et al. Research on mission success-probability of ship propulsion system based on multi-agent simulation[J]. Systems Engineering and Electronics, 2019, 41 (8): 1896- 1902. | |
33 | 曹文斌, 贾希胜, 胡起伟, 等. 随机多阶段任务成功概率仿真评估研究[J]. 兵工学报, 2017, 38 (5): 1002- 1010. |
CAO W B , JIA X S , HU Q W , et al. Research on simulation of mission completion success probability assessment for random phased-mission[J]. Acta Armamentarii, 2017, 38 (5): 1002- 1010. | |
34 | 许双伟, 刘兵, 朱安石. 保障资源约束下的装备多阶段作战任务成功性仿真评估[J]. 兵器装备工程学报, 2018, 39 (6): 114-116, 148. |
XU S W , LIU B , ZHU A S . Simulation method for evaluating equipment multi-phase combat mission success under constrained support resource[J]. Journal of Ordnance Equipment Engineering, 2018, 39 (6): 114-116, 148. |
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