Optimization method of ballistic blast fragmentation warhead striking aircraft in aircraft shelter

被引:1
|
作者
Yang J. [1 ]
Zhan J. [1 ]
Chen Z. [2 ]
Liu X. [1 ]
Zhou Z. [3 ]
Li Z. [4 ]
机构
[1] Unit 96901 of PLA, Beijing
[2] PLA Rocket Force Sergeant Academy, Weifang
[3] School of Electronics and Information, Northwestern Polytechnical University, Xi′an
[4] School of Mathematics and Data Science, Shaanxi University of Science and Technology, Xi′an
关键词
aircraft in aircraft shelter; blast fragmentation warhead; missile-target encounter; PSO algorithm; striking scheme optimization;
D O I
10.1051/jnwpu/20234110115
中图分类号
学科分类号
摘要
For evaluating the economy and feasibility about blast fragmentation warhead striking aircraft in aircraft shelter, taking a typical aircraft and single / double aircraft shelter as study objects, based on the thought of simple/quadratic surface fitting, the 3D surface models of aircraft and shelter are built. According to the velocity and position model of fragment, combined with the transformation relationship of coordinate system, the missile-target encounter algorithm is given. The ruin tree model of aircraft is constructed to calculate the ruin probability algorithm of aircraft. For reducing the computation of missile-target encounter, a mean ruin probability algorithm of aircraft based on integration method is proposed, which slices target area to grids and takes grids as alternative aim point. Taking maximum to entire ruin effect of all aircrafts as target, the optimizing algorithm to strike scheme about minimum missile consumption and find best aim point based on advanced PSO algorithm are proposed. The striking scheme optimizing about fragmentation warhead striking aircraft in single/double aircraft shelter is simulated. The result shows that, low blast height, small CEP, combination strike strategy with multiply aim points can reduce the minimum missile consumption effectively. ©2023 Journal of Northwestern Polytechnical University.
引用
收藏
页码:115 / 124
页数:9
相关论文
共 18 条
  • [1] LI Wei, FANG Yangwang, WANG Xiaoyun, Et al., Study on damage assessment method of typical hard-target, Fire Control & Command Control, 41, 5, pp. 52-55, (2016)
  • [2] DENG Guoqiang, WANG Anbao, YANG Xiumin, Et al., Comparative tests on anti-penetration performance of steel reinforced ultra-high-strength concrete, China Civil Engineering Journal, 54, 10, pp. 30-35, (2021)
  • [3] ZHONG Rui, ZHANG Fengling, Resistance of ultra-high performance concrete, fiber reinforced high strength concrete and engineered cementitious composite against projectile penetration, Journal of the Chinese Ceramic Society, 49, 11, pp. 2423-2434, (2021)
  • [4] YAN Huanmin, ZHANG Zhigang, GE Tao, Et al., Research progress of bursting layer in protection engineering, Ordnance Material Science and Engineering, 39, 1, pp. 127-132, (2016)
  • [5] MOXNES J F, PRYTZ A K, FRФYLAND Фyvind, Et al., Experimental and numerical study of the fragmentation of expanding warhead casings by using different numerical codes and solution techniques, Defense Technology, 10, pp. 161-176, (2014)
  • [6] CHEN Xinxiang, Damage assessment of typical warhead to aircraft, (2016)
  • [7] WANG Guoqing, YING Guomiao, YOU Chuntao, Destroy method of fragmentation warhead striking aircraft, Journal of Sichuan Ordnance Engineering, 30, 5, pp. 28-32, (2009)
  • [8] XIE Junjie, Target assignment and weapon-target assignment algorithms in air combat simulations, (2016)
  • [9] LI Xiaobai, One of “Three Lions” fighter in Europe: french rafale fighter, Military Abstract, 1, pp. 24-27, (2019)
  • [10] LU Junmin, Vulnerability assessment and simulation research to fixed wing aircraft when fragmentation warhead striking, (2019)