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基于脉冲控制的末段弾道修正弹点火相位优化研究
引用本文:曹营军,杨树兴,李杏军. 基于脉冲控制的末段弾道修正弹点火相位优化研究[J]. 兵工学报, 2008, 29(8): 897-901
作者姓名:曹营军  杨树兴  李杏军
作者单位:1.北京理工大学宇航科学技术学院,北京100081;2.军械工程学院,河北石家庄050003;3.中国国防科技信息中心,北京100036
摘    要:基于传统脉冲发动机点火控制逻辑,从理论上分析了点火相位特性和剩余误差,发现当脉冲发动机数量不足时,存在着较大的剩余误差。提出了一种在脉冲发动机数量不足条件下,以修正后剩余弹道偏差所需脉冲发动机数量最小为目标的点火相位控制优化策略,并采用6自由度弹道仿真验证了方法的有效性。

关 键 词:飞行器控制、导航技术    末段弹道修正弹    脉冲    点火相位    优化控制  

Research on Firing Phase Angle Optimization of Terminal Trajectory Correction Projectile Based on Pulse Jet Control
CAO Ying-jun,YANG Shu-xing,LI Xing-jun. Research on Firing Phase Angle Optimization of Terminal Trajectory Correction Projectile Based on Pulse Jet Control[J]. Acta Armamentarii, 2008, 29(8): 897-901
Authors:CAO Ying-jun  YANG Shu-xing  LI Xing-jun
Affiliation:1. School of Aerospace Science and Engineering, Beijing Institute of i echnology, Beijing 100081, Cnina;2. Ordnance Engineering College, Shijiazhuang 050003, Hebei, China;3. China Defence and Technical Information Center, Beijing 100036, China
Abstract:The firing phase angle characteristics and residual error were theoretically analyzed on the basis of traditional firing control logic of pulse jets. It has been found that there may be a large residual error when the number of pulse jets is of shortness. An optimization strategy for the firing phase angle control was presented, which makes the number of pulse jets be minimum for the residual trajectory deviation after correction under the condition that there are not enough pulse jets, Finally, the method was verified by the 6-degrees of freedom trajectory simulation.
Keywords:control and navigation for flight vehicle    terminal trajectory correction projectile    pulse    iiring phase angle    optimal control  
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