0 引言
1 问题提出
2 技术方案
Δγ=
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B1=
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Fs1=0,Fs2=0, Fs3=0,Fs4=0
Fs1=1,Fs3=0,Fsp=1
Fs1=0,Fs3=1,Fsp=1
Fs2=1,Fs4=0,Fsy=1
Fs2=0,Fs4=1,Fsy=1
Fs2=1,Fs4=0,Fsy=1
Fs2=0,Fs4=1,Fsy=1
Fs1=1,Fs3=0,Fsp=1;
Fs1=0,Fs3=1,Fsp=1
Journal of Projectiles, Rockets, Missiles and Guidance >
The Control of Vertical Launch Missile Turning with Pulse Engine
Received date: 2019-04-09
Online published: 2025-05-30
In view of the slow speed at the initial flight section, the vertical launch missile usually uses the lateral pulse engine to produce the direct force to control the turn of missile body. In order to solve the problem of how to control the missile body to turn to the appointed orientation rapidly and precisely under the condition of larger initial disturbance, this thesis, on the background of X-type vertical launch ammunition, defines a new missile-body coordinate with equal angular velocity projections, and then projects the target spatial orientation to the newly-defined missile-body coordinate. At last, the ignition instruction of pulse engine is calculated by logical operation based on the size of error angle projection. The simulation result shows that the control effect of the turning control method mentioned in the thesis is fine.
Key words: vertical launch; pulse turn; initial disturbance; direct force control
DENG Haipeng , LI Jinping , JIANG Zhi , LIANG Yiming , YANG Shujun . The Control of Vertical Launch Missile Turning with Pulse Engine[J]. Journal of Projectiles, Rockets, Missiles and Guidance, 2020 , 40(2) : 105 -108 . DOI: 10.15892/j.cnki.djzdxb.2020.02.026
Δγ=
= ·
B1=
B2=
Fs1=0,Fs2=0, Fs3=0,Fs4=0
Fs1=1,Fs3=0,Fsp=1
Fs1=0,Fs3=1,Fsp=1
Fs2=1,Fs4=0,Fsy=1
Fs2=0,Fs4=1,Fsy=1
Fs2=1,Fs4=0,Fsy=1
Fs2=0,Fs4=1,Fsy=1
Fs1=1,Fs3=0,Fsp=1;
Fs1=0,Fs3=1,Fsp=1
| [1] |
杨军. 导弹控制原理[M]. 北京: 国防工业出版社, 2010:47-50.
|
| [2] |
|
| [3] |
李新国, 方群. 有翼导弹飞行动力学[M]. 西安: 西北工业大学出版社, 2005:29-37.
|
| [4] |
邹汝平. 多用途导弹系统设计[M]. 北京: 国防工业出版社, 2018:34-59.
|
| [5] |
苗昊春, 马清华, 陈韵, 等. 基于滑模趋近律的防空导弹垂直发射姿态控制研究[J]. 计算机测量与控制, 2015, 23(4):1230-1232.
|
| [6] |
朱学平, 胡晓明, 张晓峰, 等. 基于参数空间方法和变结构控制的直接力/气动力复合控制系统设计[J]. 计算机测量与控制, 2014, 22(1):288-290.
|
/
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|
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