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Dynamics modeling and control system design for the reentry warhead controlled by single moving mass

机译:单动块控制的再入战斗部动力学建模与控制系统设计

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摘要

As one of the control actuator, the configuration moving mass is an important problem in engineering application for moving mass control technology. The translational and rotational motion of the missile is affected by the servo forces which drive the moving mass to move. It increases not only the difficulty of the missile dynamics analysis and the layout parameters design, but also the difficulty of the guidance and control loop design. Firstly, a new configuration of moving mass actuator, which consists of the rotary rail and a single moving mass that can move along the rail, is presented. Then, the system dynamic model is established and the coupling characteristics between the attitude control and the servo loop control are analyzed in this paper. According to the above analysis, the attitude tracking control law is designed based on sliding mode theory. Finally, to track the commanded overload in the terminal guidance stage, the validity of the proposed control system is demonstrated by numerical simulation.
机译:作为控制执行器之一,运动质量的配置是运动质量控制技术在工程应用中的重要问题。导弹的平移和旋转运动受伺服力的影响,伺服力驱动移动的物体移动。它不仅增加了导弹动力学分析和布局参数设计的难度,而且增加了制导与控制回路的设计难度。首先,提出了一种新型的移动质量致动器,该结构由旋转导轨和可以沿导轨移动的单个移动质量组成。然后,建立了系统动力学模型,分析了姿态控制与伺服回路控制之间的耦合特性。根据以上分析,基于滑模理论设计了姿态跟踪控制律。最后,为了跟踪终端制导阶段的指令过载,通过数值仿真证明了所提出控制系统的有效性。

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