Influence of Revolving Angle Measure Precision and Actuator Performance on Control Force

Author:

Bi Yan Chao1,Yao Xiao Xian1,Song Xiao Dong1

Affiliation:

1. Beijing Institute of Technology

Abstract

A control mathematical model in pitch and yaw direction is presented to apply on missiles controlled by double-channel with style canard. Based on the mathematical model, the influence of deflection angle measurement error and actuator performance on actuator control is analyzed. The results show that the measure error of lean angle and actuator delay will produce control coupling in pitch and yaw direction and that will reduce control efficiency.

Publisher

Trans Tech Publications, Ltd.

Reference9 articles.

1. Kuangbiao Wang. Guidance technology and its applica-tion of rolling missile [J]. Journal of Projectiles Rockets Missiles and Guidance, 2002(03): 28-31. (in Chinese).

2. Yu Fu, Jun Yang. Double Channel Autopilot Decoupling Control for Guided Projectile[J]. Computer Simulation, 2009(10): 48-51. (in Chinese).

3. Xingfang Qian, Ruixiong Lin, Ya'nan Zhao. Missile flight dyanmics[M]. Beijing Institute of Technology Press, 2000. (in Chinese).

4. Theodoulis S, Morel Y, Wernert P. Modelling and stability analysis of the 155 mm spin-stabilised projectile equipped with steering fins[J]. International Journal of Modelling Identification and ControlInt Model Identif. Control (Switzerland). 2011, 14(3): 189-204.

5. Wernert P. Stability analysis for canard guided dual-spin stabilized projectiles[Z]. Chicago, IL, United states: (2009).

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