多管火箭变射序射击间隔发射技术研究

唐文兵,芮筱亭,王国平

振动与冲击 ›› 2016, Vol. 35 ›› Issue (2) : 51-57.

PDF(1959 KB)
PDF(1959 KB)
振动与冲击 ›› 2016, Vol. 35 ›› Issue (2) : 51-57.
论文

多管火箭变射序射击间隔发射技术研究

  • 唐文兵,芮筱亭,王国平
作者信息 +

Research on launch technique of variant firing orders and variant firing intervals for multiple launch rockets system

  • TANG Wen-bing,RUI Xiao-ting,WANG Guo-ping
Author information +
文章历史 +

摘要

用多体系统传递矩阵法建立某多管火箭系统动力学模型、拓扑图及数值仿真系统,对比不同工况的多管火箭系统动态特性;设计射序、射击间隔联合优化连续变量,结合遗传算法实例进行以不同工况最佳射击密集度为目标的最佳射序、射击间隔优化。结果表明,射击密集度能提高30%以上;基于单片机技术研制的不同工况下自适应发火装置工程应用效果良好,能实现多管火箭变射序、射击间隔发射技术。

Abstract

Based on transfer matrix method for multibody system, the dynamics model of a certain multiple launch rockets system (MLRS), the topology figure of dynamics model, the numerical dynamics simulation system are established, and the dynamic characteristics of MLRS in different working conditions are compared. Then continuous variables for joint optimization are designed for firing orders and firing intervals, combining with the Genetic Algorithms, the optimal design of firing orders and firing intervals for the purpose of the best firing dispersion in different working conditions is focused in a real case. The results of simulation show that the firing dispersion has been improved more than 30%. Based on chip microprocessor technology, a self-adaption firing device is manufactured, which receives good achievement in engineering application. Thus, the launch technique of variant firing orders and variant firing intervals for MLRS has been realized.
 

关键词

多管火箭 / 多体系统传递矩阵法 / 遗传算法 / 变射序 / 变射击间隔 / 自适应发火装置 / 射击密集度

Key words

multiple launch rockets system / transfer matrix method for multibody system / Genetic Algorithms / variant firing orders / variant firing intervals / self-adaption firing device / firing dispersion

引用本文

导出引用
唐文兵,芮筱亭,王国平. 多管火箭变射序射击间隔发射技术研究[J]. 振动与冲击, 2016, 35(2): 51-57
TANG Wen-bing,RUI Xiao-ting,WANG Guo-ping. Research on launch technique of variant firing orders and variant firing intervals for multiple launch rockets system[J]. Journal of Vibration and Shock, 2016, 35(2): 51-57

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