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A Motor-driven Self-leveling Device for Unmanned Weapon System

机译:一种用于无人武器系统的电动自平整装置

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In order to solve the level-adjusting problem of unmanned weapon system in complex environment, a self-leveling device is developed in this paper. After a brief introduction of the working principle of the self-leveling system, the mathematical model of the device is established, in which the two-axis inclination angles are measured by the tilt sensor, and then the leveling algorithm is obtained through coordinate transformation. The stepper motor is adopted as the system actuator after analyzing its control strategy. The results of motor tests show that the rotation angle is controlled by an accurate degree. Finally, the position information measured by the sensor is used as input of the motor, and the reliability test of the algorithm is performed. The experimental results show that the proposed device and algorithm can realize the function of automatic leveling in different inclination states.
机译:为了解决复杂环境中无人武器系统的水平调整问题,本文开发了自平整装置。在简要介绍自平整系统的工作原理之后,建立了装置的数学模型,其中通过倾斜传感器测量双轴倾斜角,然后通过坐标变换获得电平算法。在分析控制策略后,步进电机被用作系统执行器。电动机试验结果表明,旋转角度由精确度控制。最后,传感器测量的位置信息用作电动机的输入,并且执行算法的可靠性测试。实验结果表明,所提出的装置和算法可以实现不同倾斜状态自动调平的功能。

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