期刊文献+

机动防空任务聚合级装备作战单元维修性仿真 被引量:5

Simulation Model of Aggregated Equipment Combat Units' Mission Maintainability Based on Mobile Aerial Defense Mission
在线阅读 下载PDF
导出
摘要 装备作战单元在执行任务过程中常处于聚合状态,影响其作战效能的重要因素之一就是任务维修性。任务维修性的度量参数有多种,文中采用恢复功能的任务时间(MTTRF),在分析聚合级装备作战单元层次和特性的基础上,剖析了聚合级装备作战单元MTTRF的具体含义,给出了在机动防空任务下聚合级装备作战单元MTTRF的仿真方法和流程,应用Petri网技术在ExSpect仿真环境下建立了聚合级装备作战单元机动防空任务下维修性的仿真模型,实现了对聚合级装备作战单元各层MTTRF的仿真。最后,通过一个实例对模型进行验证。 The equipment combat unit is usually in the aggregated state when operate mission, and the mission maintainability is an important factor for its operational effectiveness. There were kinds of parameter to measure the mission maintainability, and the parameter of Mission Time to Restore Function was adopted. Based on the analyses to the levels and the performance of the aggregated equipment combat units, the signification of aggregated equipment combat units' Mission Time to Restore Function was analyzed, the simulation method and simulation flow for the mobile aerial defense mission of aggregated equipment combat units was given, and then the simulation model with Petri - net and ExSpect was constructed. Finally, an example was used to prove the simulation model.
机构地区 军械工程学院
出处 《计算机技术与发展》 2009年第11期230-233,237,共5页 Computer Technology and Development
基金 国防预研基金项目(51419060203JB3402)
关键词 聚合级装备作战单元 任务维修性 恢复功能的任务时间 机动防空 PETRI网 aggregated equipment combat units mission maintainability mission time to restore function mobile aerial defense mission Petri - net
  • 相关文献

参考文献9

二级参考文献38

  • 1田立勤,林闯.一类可由基本模型嵌套组成的工作流系统的性能分析方法[J].电子学报,2003,31(Z1):2167-2170.
  • 2李颖.通信网络系统可靠性研究[J].移动通信,2003,27(11B):177-179. 被引量:3
  • 3姜浩,董逸生.一种基于扩展时间Petri网的工作流时间性能评价方法[J].计算机研究与发展,2005,42(5):849-855. 被引量:13
  • 4[1]Bill Caldwell etc. Aggregated Combat Models[C]. Operations Research Department of Naval Postgraduate School, 2000.
  • 5[2]Richard W Pew and Anne S Mavor. MODELING HUMAN AND ORGANIZATIONAL BEHAVIOR[M] NATIONAL ACADEMY PRESS,1998.
  • 6A H Moor, et al. Comparison of Monte Carlo Techniques for Obtaining System Reliability Confidence Limits [J]. IEEE October 1980, 29 (4): 178-191.
  • 7Labeau P E, Zio E. Procedures of Monte Carlo transport simulation for applications in system engineering [J]. Reliability Engineering and System Safety, 2002, 77(3): 217-228.
  • 8Marseguerra Zio, Podofillini. Condition-based maintenance optimization by means of genetic algorithms and Monte Carlo simulation [J]. Reliability Engineering and System Safety. 2002, 77(2): 151-165.
  • 9Barata J, Soares C Guedes, Marseguerra M, Zio E. Simulation modelling of repairable multi-component deteriorating systems for on condition' maintenance optimization [J]. Reliability Engineering and System Safety, 2002, 76(3): 255-264.
  • 10Siu. A Monte Carlo method for multiple parameter estimation in the presence of uncertain data [J]. Reliability Engineering and System Safety. 1990, 28: 59-98.

共引文献38

同被引文献65

引证文献5

二级引证文献19

相关作者

内容加载中请稍等...

相关机构

内容加载中请稍等...

相关主题

内容加载中请稍等...

浏览历史

内容加载中请稍等...
;
使用帮助 返回顶部