Articles

Degraded state vulnerability analysis and assessment simulation for main-battle tank weapon system

  • LI Xiangrong ,
  • LIU Yunquan ,
  • ZHAO Hailong ,
  • ZHAO Shuo ,
  • WANG Guohui
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  • 1. Department of Arms Engineering, Academy of Armored Force Engineering, Beijing 100072, China;
    2. Unit 65053, PLA, Dalian 116013, China

Received date: 2014-09-30

  Revised date: 2014-12-27

  Online published: 2015-05-05

Abstract

Vulnerability analysis and assessment simulation was carried out with main-battle tank weapon system as the research object according to implementation procedure of degraded state (DS) assessment method. First, DS values revealing loss of functions of each sub-system were identified based on analysis of each sub-system functions. Function damage trees were created using deductive method from top to bottom. To realize threat-target interaction, instant velocity of debris behind armor was simulated using Monte Carlo stochastic simulation method. Component level vulnerability assessment simulation system was developed by Visual C 6.0 platform. Function modules were designed, and one case was run and simulated results were analyzed. It showed that relative space between one component and hit point and whether there are defense components directly affect damage state of the component. In component level vulnerability analysis, not only vulnerability area but also defense and shelter need to be considered. Research in this paper is one important part of component level vulnerability assessment of armored equipment and may provide a foundation for battle damage assessment and exact support simulation.

Cite this article

LI Xiangrong , LIU Yunquan , ZHAO Hailong , ZHAO Shuo , WANG Guohui . Degraded state vulnerability analysis and assessment simulation for main-battle tank weapon system[J]. Science & Technology Review, 2015 , 33(8) : 89 -93 . DOI: 10.3981/j.issn.1000-7857.2015.08.015

References

[1] Martin L. Operational requirements document for the bradley linebacker. Headquarters[R]. Fort Bliss, Texas: US Army Air Defense Artillery School, 1996.
[2] Klopcic J T, Reed H L. Historical perspectives on vulnerability/lethality analysis[R]. Adelphi, Maryland: US Army Research Laboratory, 1999.
[3] 翟晓丽. 装甲车辆易损性研究[D]. 北京: 北京理工大学, 1997. Zhai Xiaoli. Armored vehicles vulnerability research[D]. Beijing: Beijing Institute of Technology, 1997.
[4] 余文力. D02末制导炮弹对轻型装甲车辆毁伤效应研究[D]. 北京: 北京理工大学, 2000. Yu Wenli. D02 terminal guidance projectile damage effect research of light armored vehicles[D]. Beijing: Beijing Institute of Technology, 2000.
[5] 李建明. 装甲装备战斗毁伤概率分析研究[D]. 北京: 装甲兵工程学院, 1997. Li Jianming. The armored equipment battle damage probability analysis research[D]. Beijing: Academy of Armored Force Engineering, 1997.
[6] 王国辉, 李向荣. 破甲弹对复合装甲毁伤数值模拟分析[J]. 北京理工大学学报, 2014, 37(8): 791-795. Wang Guohui, Li Xiangrong. Numerical simulation on damage effects of shaped charge to composite armor[J]. Transactions of Beijing Institute of Technology, 2014, 37(8): 791-795.
[7] 赵海龙. 榴弹作用下主战坦克关键部件战损评估方法研究[D]. 北京: 装甲兵工程学院, 2013. Zhao Hailong. Grenade battle tanks under key component battle damage assessment method research[D]. Beijing: Academy of Armored Force Engineering, 2013.
[8] 王海福, 李向荣, 刘志雄, 等. 基于射击线网格法的易损性仿真方法[J]. 弹箭与制导学报, 2002, 22(2): 74-79. Wang Haifu, Li Xiangrong, Liu Zhixiong, et al. The vulnerability simulation method based on aiming grid of shot lines[J]. Journal of Projectiles Rockets, Missiles and Guidance, 2002, 22(2):74-79
[9] 李向荣, 王国辉, 徐峰. 杀爆弹对主战坦克毁伤评估仿真[J]. 装甲兵工程学院学报, 2009, 4(2): 44-47. Li Xiangrong, Wang Guohui, Xu Feng. Fragmentation bomb to battle tank damage assessment[J]. Journal of Academy of Armored Force Engineering, 2009, 4(2): 44-47.
[10] 裴扬, 宋笔锋, 韩庆. 基于专家系统的飞机致命性部件辨识方法研究[J]. 现代防御技术, 2004, 32(6): 20-25. Pei Yang, Song Bifeng, Han Qing. Aircraft deadly component identification method based on expert system research[J]. Modern Defense Technology, 2004, 32(6): 20-25.
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