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Study on the Common Process of Assessment of Target Vulnerability

  • WU Shuangzhang ,
  • GAO Zhenru ,
  • HUANG Junyi ,
  • LI Yuchun ,
  • GUO Tao ,
  • DING Wen ,
  • WU Jiaxiang
Expand
  • College of Field Engineering, Army Engineering University of PLA, Nanjing 210007, Jiangsu, China

Received date: 2024-11-03

  Online published: 2025-02-10

Abstract

In view of the outstanding problems existing in the assessment model, method, system and process of assessment of target vulnerability, such as numerous and disorderly assessment models, methods and processes, and poor timeliness and accuracy of assessment system, it is necessary to deeply study the common process of assessment of target vulnerability including assessment model, method and system. This paper mainly uses theoretical analysis, example illustration and other methods to explore it. A common process of assessment of target vulnerability is proposed, it mainly includes characteristic analysis of target, characteristic analysis of damage element, classification of target damage levels, analysis of target critical components, analysis of target damage characteristic and assessment of target vulnerability. Based on this, a system framework for target vulnerability assessment is proposed, which includes the subsystem of target characteristics, the subsystem of warhead power and characteristics of damage element, the subsystem of warhead coincides with target, the subsystem of characteristics of target damage, the subsystem of vulnerability assessment, as well as the subsystems of preprocessing and postprocessing and data management. Integrate artificial intelligence into the assessment system to enhance the intelligence level of the assessment system of target vulnerability. At the same time, each subsystem should be open, allowing content to be added in a standardized format, continuously enhancing its standardization and versatility.

Cite this article

WU Shuangzhang , GAO Zhenru , HUANG Junyi , LI Yuchun , GUO Tao , DING Wen , WU Jiaxiang . Study on the Common Process of Assessment of Target Vulnerability[J]. Journal of Projectiles, Rockets, Missiles and Guidance, 2024 , 44(6) : 95 -104 . DOI: 10.15892/j.cnki.djzdxb.2024.06.012

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[1]
王树山, 马峰, 郭勋成, 等. 武器弹药终点毁伤评估[M]. 北京: 北京理工大学出版社, 2021.

WANG S S, MA F, GUO X C, et al. Terminal damage assessment of weapons and ammunition[M]. Beijing: Beijing Institute of Technology Press, 2021.

[2]
李向东, 杜中华. 目标易损性[M]. 北京: 北京理工大学出版社, 2013.

LI X D, DU Z H. Target vulnerability[M]. Beijing: Beijing Institute of Technology Press, 2013.

[3]
王海福, 卢湘江, 冯顺山. 降阶态易损性分析方法及其实施[J]. 北京理工大学学报, 2002, 22(2):214-216.

WANG H F, LU X J, FENG S S. Degraded states vulnerability methodology and its implementation[J]. Journal of Beijing Institute of Technology, 2002, 22(2):214-216.

[4]
李向荣, 刘云泉, 赵海龙, 等. 主战坦克武器系统降阶态易损性分析与评估仿真[J]. 科技导报, 2015, 33(8):89-93.

DOI

LI X R, LIU Y Q, ZHAO H L, et al. Degraded state vulnerability analysis and assessment simulation for main-battle tank weapon system[J]. Technology Review, 2015, 33(8):89-93.

[5]
曹烨. 目标易损性分析中的失效树与毁伤仿真结合研究[D]. 长沙: 国防科技大学, 2016.

CAO Y. The combination of fault tree analysis and weapon effects simulation in target vulnerability research[D]. Changsha: National University of Defense Technology, 2016.

[6]
胡慧, 袁震宇, 谢春思, 等. 基于毁伤树构建系统目标毁伤评估模型研究[J]. 舰船电子工程, 2010, 194(28):32-35.

HU H, YUAN Z Y, XIE C S, et al. Research on constructing damage assessment model of system target based on the function tree[J]. Ship Electronic Engineering, 2010, 194(28):32-35.

[7]
王坤, 蒋鸣, 刘新学, 等. XML处理装备易损性仿真中毁伤树问题的应用[J]. 装备制造技术, 2009(10):93-94.

WANG K, JIANG M, LIU X X, et al. The application of using XML treating with the problem of destroy-tree in the emulation of the vulnerability of the target[J]. Equipment Manufacturing Technology, 2009(10):93-94.

[8]
王树山, 王新颖. 毁伤评估概念体系探讨[J]. 防护工程, 2016, 38(5):1-6.

WANG S S, WANG X Y. Study on the concept system of damage assessment[J]. Protective Engineering, 2016, 38(5):1-6.

[9]
范开军, 易华辉, 周朝阳. 毁伤评估技术体系概论[J]. 防护工程, 2016, 38(5):7-10.

FAN K J, YI H H, ZHOU C Y. Introduction to technical system of damage assessment[J]. Protective Engineering, 2016, 38(5):7-10.

[10]
王玉, 张兵, 唐凯, 等. 复杂系统目标易损性等效结构建模与毁伤律分析方法[J]. 弹箭与制导学报, 2019, 39(5):99-102.

WANG Y, ZHANG B, TANG K, et al. Vulnerability equivalent structure modeling and damage law analysis method for complex system target[J]. Journal of Projectiles,Rockets,Missiles and Guidance, 2019, 39(5):99-102.

[11]
陈景新. 弹目交会收益不确定信息目标毁伤建模与评估方法[D]. 西安: 西安工业大学, 2024.

CHEN J X. Target damage modeling and evaluation method based on uncertain gain information under the intersection between projectile and target[D]. Xi'an: Xi'an Technological University, 2024.

[12]
李彤. 定向破片战斗部对无人机群毁伤效能评估[D]. 沈阳: 沈阳理工大学, 2023.

LI T. Targeted fragmentation combat team damage effectiveness assessment for UAV swarms[D]. Shenyang: Shenyang Ligong University, 2023.

[13]
张国旗, 侯岳, 王康勃. 基于马尔科夫链的舰艇初期设计阶段易损性分析[J]. 船舶工程, 2023, 45(3):67-72.

ZHANG G Q, HOU Y, WANG K B. Vulnerability analysis of ship in preliminary design stage based on markov chain[J]. Ship Engineering, 2023, 45(3):67-72.

[14]
GOODRUM C J, SHIELDS C P F, SINGER D J. Understanding cascading failures through a vulnerability analysis of interdependent ship-centric distributed systems using networks[J]. Ocean Engineering, 2018,150:36-47.

[15]
FRIEBE M, SKAHEN D, AKSU S. A framework to improve the naval survivability design process based on the vulnerability of a platform's systems[J]. Ocean Engineering, 2019,173:677-686.

[16]
侯岳, 浦金云, 张风香. 舰艇技术设计阶段的生命力分析方法[J]. 舰船科学技术, 2013, 35(6):32-37.

HOU Y, PU J Y, ZHANG F X, et al. Research on ship survivability analysis model in detailed design stage[J]. Ship Science and Technology, 2013, 35(6):32-37.

[17]
王海坤, 刘建湖, 张效慈, 等. 基于模糊随机理论的舰船易损性评估模型[J]. 兵工学报, 2016, 37(增刊1):57-64.

WANG H K, LIU J H, ZHANG X C, et al. Naval ship vulnerability assessment model based on fuzzy-random theory[J]. Acta Armamentarii, 2016, 37(S1):57-64.

[18]
王康勃, 侯岳, 浦金云, 等. 舰艇抗损性的全系统建模及仿真平台研究[J]. 兵工学报, 2018, 39(3):569-576.

DOI

WANG K B, HOU Y, PU J Y, et al. Research on systemic modeling and simulation platform of warship vulnerability[J]. Acta Armamentarii, 2018, 39(3):569-576.

[19]
李晓航, 张力锋, 张鹏, 等. 基于杀爆战斗部轻型装甲车辆毁伤评估体系构建[J]. 弹箭与制导学报, 2023, 43(4):21-26.

DOI

LI X H, ZHANG L F, ZHANG P, et al. Construction of damage assessment system for light armored targets based on blast[J]. Journal of Projectiles,Rockets,Missiles and Guidance, 2023, 43(4):21-26.

[20]
李向东, 苏义岭, 韩永要. 导弹目标在破片式战斗部作用下的易损性评估[J]. 爆炸与冲击, 2007, 27(5):468-472.

LI X D, SU Y L, HAN Y Y. Vulnerability assessment of the missile subjected to the fragment warhead[J]. Explosion and Shock Waves, 2007, 27(5):468-472.

[21]
王诚成, 谢晓方, 孙涛, 等. 反舰导弹易损性模型分析[J]. 弹箭与制导学报, 2013, 33(1):67-69.

WANG C C, XIE X F, SUN T, et al. Vulnerability analysis of typical anti-ship missile[J]. Journal of Projectiles,Rockets,Missiles and Guidance, 2013, 33(1):67-69.

[22]
倪春雷, 姜鹏. 反舰导弹战斗部对舰船毁伤效能试验评估方法研究[J]. 飞航导弹, 2020(2):76-79.

NI C L, JIANG P. Study on evaluation method of anti-ship missile warhead damage effectiveness test to ship[J]. Cruise Missiles, 2020(2):76-79.

[23]
裴扬. 飞机非核武器威胁下易损性定量计算方法研究[D]. 西安: 西北工业大学, 2006.

PEI Y. Quantitative calculation method of aircraft non-nuclear vulnerability[D]. Xi'an: Northwestern Polytechnical University, 2006.

[24]
裴扬, 宋笔锋, 李占科. 飞机易损性评估的基本方法研究[J]. 弹箭与制导学报, 2004, 24(2):70-74.

PEI Y, SONG B F, LI Z K. Research on the aircraft vulnerability assessment method[J]. Journal of Projectiles,Rockets,Missiles and Guidance, 2004, 24(2):70-74.

[25]
刘方. 攻防对抗弹目交会目标毁伤决策方法研究[D]. 西安: 西安工业大学, 2024.

LIU F. Research on decision method for destruction of intersecting targets in attack and defense confrontation[D]. Xi'an: Xi'an Technological University, 2024.

[26]
曲婉嘉, 徐忠林, 刘颖. 基于GA-动态BP神经网络的雷达毁伤效果评估[J]. 战术导弹技术, 2016(6):51-57.

QU W J, XU Z L, LIU Y. Damage assessment of radar position based on GA-dynamic BP neural network[J]. Tactical Missile Technology, 2016(6):51-57.

[27]
王瀛, 李文章. 基于毁伤判据的目标毁伤评估分析[J]. 四川兵工学报, 2011, 32(6):129-131.

WANG Y, LI W Z. Target damage evaluation analysis based on damage criterion[J]. Journal of Sichuan Military Engineering, 2011, 32(6):129-131.

[28]
张宗腾, 张琳, 谢春燕, 等. 基于改进GA-BP神经网络的目标毁伤效果评估[J]. 火力与指挥控制, 2021, 46(11):43-48.

ZHANG Z T, ZHANG L, XIE C Y, et al. Battle damage effect assessment based on improved GA-BP neural network[J]. Fire Control & Command Control, 2021, 46(11):43-48.

[29]
徐祎, 陈百权, 马兹浩, 等. 基于Unity 3D的杀爆战斗部对相控阵雷达毁伤评估可视化设计与实现[J]. 兵器装备工程学报, 2024, 45(2):9-15.

XU Y, CHEN B Q, MA Z H, et al. Visual design and implementation of damage assessment for phased array radar by explosive warhead based on Unity 3D[J]. Journal of Ordnance Equipment Engineering, 2024, 45(2):9-15.

[30]
杨伟斌, 刘颖, 刘健, 等. 基于加权网络的系统目标毁伤效果评估[J]. 火力与指挥控制, 2013, 38(2):141-144.

YANG W B, LIU Y, LIU J, et al. Damage effect evaluation of system target based on weighted network[J]. Fire Control & Command Control, 2013, 38(2):141-144.

[31]
孔德锋, 陈力, 王晓峰. 基于离散型贝叶斯网络的毁伤效果评估方法研究[J]. 防护工程, 2014, 36(4):42-46.

KONG D F, CHEN L, WANG X F. Damage effect assessment method research based on discrete Bayesian network[J]. Protective Engineering, 2014, 36(4):42-46.

[32]
朱旭, 朱万红, 朱超, 等. 基于毁伤树的防御阵地生存效能研究[J]. 防护工程, 2018, 40(4):36-40.

ZHU X, ZHU W H, ZHU C, et al. Research on the positional survivability based on damage tree[J]. Protective Engineering, 2018, 40(4):36-40.

[33]
朱万红, 陈小刚, 朱旭, 等. 基于毁伤树的车载移动指挥所系统防护效能评估模型研究[J]. 防护工程, 2023, 45(1):26-31.

ZHU W H, CHEN X G, ZHU X, et al. Research on an evaluation model of the systematic protective effectiveness of vehicle-mounted mobile command post based on damage tree[J]. Protective Engineering, 2023, 45(1):26-31.

[34]
翟成林, 陈小伟. 导弹战斗部打击下目标毁伤评估的研究进展[J]. 含能材料, 2021, 29(2):166-180.

ZHAI C L, CHEN X W. A review on damage assessment of target hit by missile warhead[J]. Chinese Journal of Energetic Materials, 2021, 29(2):166-180.

[35]
魏庆栋, 王忠, 江光德, 等. 导弹打击目标的毁伤效果评估方法研究综述[J]. 战术导弹技术, 2023(3):76-88.

WEI Q D, WANG Z, JIANG G D, et al. Review on damage effect evaluation method of missile attacking target[J]. Tactical Missile Technology, 2023(3):76-88.

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