Experimental Verification on the Rotational and Sway Control of a Suspended Horizontally Movable Multi-Rotor

Kazuya Miyamoto, Shinsuke Kanda, Keigo Watanabe, I. Nagai
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Abstract

Suspending and transporting a load is met in many situations. However, it has been regarded as a problem because it leads to a decrease in work efficiency and an accident if the load is oscillated or rotated during transportation due to disturbances caused by winds or operational errors. As a countermeasure to this problem, a method for controlling sway and rotation with a suspending machine has been studied. However, such a method can only control swaying and not rotation, and are not applicable to all transport machines or aircrafts. Therefore, in this research, it is aimed at controlling the tip of the wire directly by using a horizontally movable multi-rotor, which is applicable to all types of suspending machines or aircrafts and can control the rotation as well as the swing. Then, a rotational control experiment and a sway control experiment are conducted using the developed horizontally movable multi-rotor to verify its usefulness for the sway and rotational motions.
悬挂式水平移动多转子旋转摆动控制的实验验证
在许多情况下都会遇到悬挂和运输货物的情况。然而,它一直被认为是一个问题,因为它会导致工作效率下降,如果在运输过程中由于风或操作错误引起的干扰而导致负载振荡或旋转,则会发生事故。为了解决这一问题,本文研究了一种用悬架控制摆动和旋转的方法。但是这种方法只能控制摇摆而不能控制旋转,并不适用于所有的运输机械或飞机。因此,本研究的目的是利用水平移动多转子直接控制导线的尖端,该多转子适用于各种悬吊机械或飞行器,既可以控制其旋转,也可以控制其摆动。然后,利用所研制的水平移动多转子进行了旋转控制实验和摆动控制实验,验证了其对摆动和旋转运动的有效性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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