1. 海军工程大学 兵器工程学院,湖北 武汉 430000
2. 92767部队,山东 青岛 266000
[ "张宁(1981—),男,副教授,硕士生导师,研究方向为目标特性及信息处理技术。E-mail:18602710800@163.com;" ]
[ "林海华(1978—),男,工程师,研究方向为武器系统运用与保障工程。E-mail:510371610@qq.com;" ]
[ "孙亚平(1991—),男,工程师,硕士,研究方向为武器系统运用与保障工程。E-mail:215132362@qq.com; " ]
李宗吉(1974—),男,副研究员,硕士生导师,研究方向为水中兵器信号处理。E-mail:215132362@qq.com
[ "王世哲(1997—),男,博士研究生,研究方向为武器系统运用与保障工程。E-mail:3318710200@qq.com" ]
收稿:2021-11-13,
纸质出版:2023-03-28
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张宁, 林海华, 孙亚平, 等. 鱼雷装备测试维修Petri网模型与指标论证分析[J]. 兵工学报, 2023,44(3):886-894.
Ning ZHANG, Haihua LIN, Yaping SUN, et al. Analysis of Petri Net Model and Index Demonstration for Torpedo Equipment Testing and Maintenance[J]. Acta Armamentarii, 2023, 44(3): 886-894.
张宁, 林海华, 孙亚平, 等. 鱼雷装备测试维修Petri网模型与指标论证分析[J]. 兵工学报, 2023,44(3):886-894. DOI: 10.12382/bgxb.2021.0768.
Ning ZHANG, Haihua LIN, Yaping SUN, et al. Analysis of Petri Net Model and Index Demonstration for Torpedo Equipment Testing and Maintenance[J]. Acta Armamentarii, 2023, 44(3): 886-894. DOI: 10.12382/bgxb.2021.0768.
针对鱼雷装备测试维修使用需求,采用广义随机Petri网模型对鱼雷装备进行测试维修建模,并对测试性指标进行分析。分别建立鱼雷装备系统层和结构层GSPN模型,依据故障模式影响和危害性分析(FMECA)对鱼雷装备故障模式进行分类;对鱼雷结构层GSPN模型非基本变迁进行拓展,构建鱼雷装备基层级维修子网GSPN模型;采用同构法求解维修子网GSPN模型,利用的稳态可用度解析公式分析测试性参数与使用可用度(
A
0
)之间的影响关系;以某型号鱼雷为例,开展测试性指标求解和模型仿真验证。研究结果表明,模型仿真可用度A’=0.999 8,与系统要求值误差小于1%,验证了所构建模型的可行性和有效性。
To meet the needs of testing and maintenance of torpedo equipment
the generalized stochastic Petri net model is used to the testing and maintenance modelling of the torpedo equipment
and the testability indices are analyzed. Firstly
the GSPN models of the system layer and the structure layer of the torpedo equipment are established respectively
and the failure modes of the torpedo equipment are classified according to the failure mode
effects and criticality analysis (FMECA). Then the non-basic transition of the GSPN model of the torpedo structure layer is expanded. Second
the isomorphism method is adopted to solve the maintenance sub-network GSPN model
and the steady-state availability analytical formula is employed to analyze the influence relationship between the testability parameters and the use availability (
A
0
). Finally
taking a certain type of torpedo as an example
the testability index solution and model simulation verification are carried out. The model simulation availability is A’=0.999 8
and the e
rror with the system requirement value is less than 1%
which verifies the feasibility and effectiveness of the constructed model.
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