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Controllable Rotary Actuator System Aerodynamic Simulation and MATLAB Modeling Techniques Research

机译:可控旋转执行器系统空气动力学模拟和MATLAB建模技术研究

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In order to reduce the deviation between the target and the ammunition's trajectory during the intersection,the easy guided ammunition with guided actuator device equipped is proposed.Traditional easy guided ammunition technology is used to correct the projectile's trajectory.In this paper,a new actuator control system design is adopted to upgrade the ordinary warhead by a controllable rotation actuator,with a permanent magnet DC torque motor as the servo motor,and a control system based on DSP to control DC motor.First,an aerodynamics simulation based on the code FLUENT is carried out to obtain the dependence of aerodynamics parameters on deflection angle,and then a mathematical model of the system's mechanics is built.Simulink software is used to achieve the motor's output angle control by two-quadrant single phase rectifier DC drive.The angle sensor measures motor output angles,which are collected to enable real-time measurement of output angle's change,and a theoretical foundation is constructed for future's DSP hardware simulation.The simulation results show that the rotation actuator system has a good dynamic and static characteristics,the system is relatively stable with respect to the ground coordinate system,and the simulation provides some reference for the future system design.
机译:为了减少在交叉路口期间目标和弹药的轨迹之间的偏差,提出了配备指导执行器装置的简单引导弹药。用于纠正弹丸的轨迹。本文,新的执行器控制采用系统设计来升级普通弹头,可控制的旋转执行器,具有永磁直流扭矩电机作为伺服电机,基于DSP的控制系统控制直流电机。首先,基于代码流畅的空气动力学仿真是进行以获得空气动力学参数对偏转角的依赖性,然后构建了系统力学的数学模型.Simulink软件用于通过双象限单相整流器直流驱动器实现电机的输出角度控制。角度传感器测量电机输出角度,收集,以便能够实时测量输出角度的变化,以及理论基础为将来的DSP硬件仿真构建。仿真结果表明,旋转执行器系统具有良好的动态和静态特性,该系统相对于地面坐标系相对稳定,模拟为未来的系统设计提供了一些参考。

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