舰船电子工程2024,Vol.44Issue(8) :146-152.DOI:10.3969/j.issn.1672-9730.2024.08.030

地面装甲类目标毁伤建模与评估方法

Modeling and Evaluation Method for Damage of Ground Armored Targets

刘方 薛静云 陈景新 高健健 诸葛鼎
舰船电子工程2024,Vol.44Issue(8) :146-152.DOI:10.3969/j.issn.1672-9730.2024.08.030

地面装甲类目标毁伤建模与评估方法

Modeling and Evaluation Method for Damage of Ground Armored Targets

刘方 1薛静云 2陈景新 1高健健 1诸葛鼎3
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作者信息

  • 1. 西安工业大学电子信息工程学院 西安 710000
  • 2. 西安工业大学机电工程学院 西安 710000
  • 3. 西安工业大学兵器科学与技术学院 西安 710000
  • 折叠

摘要

针对战斗部对地面装甲类目标实战化毁伤评估中破片战斗部爆炸高瞬态形成的不确定破片群很难直接用现有的方法对复杂系统目标进行毁伤评估的现象,论文以轻型地面装甲车为被毁对象,提出了一种新的目标毁伤建模与评估方法.在深入探究目标系统及其子功能的基础上,对轻型地面装甲车进行易损性分析并建立等效模型,给出基于轻型装甲车目标易损性和弹目交会关系的概率模型;最后对目标的毁伤评估进行仿真模拟,结果表明评估破片战斗部对轻型地面装甲车的实战化毁伤效果,可为破片战斗部毁伤效能的研究提供参考,并为目标毁伤概率定量计算提供新的理论支撑.

Abstract

In response to the phenomenon of uncertain fragments formed by explosive high transients in the warhead during the practical damage assessment of ground armored targets,it is difficult to directly use existing methods for damage assessment of complex system targets.This paper proposes a new target damage modeling and assessment method based on light ground armored vehicles as the destroyed object.On the basis of in-depth exploration of the target system and its subfunctions,vulnerability analy-sis is conducted on light ground armored vehicles and an equivalent model is established.A probability model based on the target vulnerability of light armored vehicles and the relationship between missile and target rendezvous is provided.Finally,simulation is conducted on the damage assessment of the target,and the results show that evaluating the practical damage effect of fragment war-heads on light ground armored vehicles can provide a reference for the study of the damage efficiency of fragment warheads and pro-vide new theoretical support for the quantitative calculation of target damage probability.

关键词

轻型地面装甲车/易损性/等效模型/毁伤评估/目标毁伤概率

Key words

light ground armored targets/vulnerability/equivalent model/damage assessment/target damage probability

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出版年

2024
舰船电子工程
中国船舶重工集团公司第709研究所 中国造船工程学会 电子技术学术委员会

舰船电子工程

CSTPCD
影响因子:0.243
ISSN:1627-9730
参考文献量15
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