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Development of UGS Monocopter: Platform Design and Trajectory Tracking

机译:UGS Monocopter的开发:平台设计和轨迹跟踪

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This paper covers the aspects of designing the control system of the monocopter wing Micro Aerial Vehicle (MAV). The monocopter is a single bladed vehicle which rotates the entire aircraft about its centre of mass. A working monocopter was used in this project. A motion capture system called OptiTrack and other simple programs such as SolidWorks and MATLAB was heavily used to ease the process of this research project. Flight trajectory data of the monocopter were obtained using the motion capture system, OptiTrack. The data was plotted against time into 3D and 2D graphs using MATLAB. Relevant data such as the body angular rates and linear velocity of the monocopter can be obtained by using the x,y,z coordinates from the flight trajectory data. A rough model of the monocopter was sketched using SolidWorks in order to get the moment of inertia. Thus, the values of body angular rates, linear velocity and moment of inertia can be inserted into the equations of motion of the monocopter to determine the forces and moments output results. It is concluded that the values of forces and moments can be used to find relevant information or behaviour of the flying monocopter such as the amount of forces needed to pitch at a certain angle. Forces and moments can also be used to find the values of coefficient of lift and moments.
机译:本文涵盖了设计单眼车翼微鸟(MAV)控制系统的方面。单眼车是一辆叶片车辆,旋转整个飞机关于其质心。在该项目中使用了一项工作的单眼车。称为Optitrack和其他简单程序(如SolidWorks和Matlab)的运动捕获系统大量用于缓解本研究项目的过程。使用运动捕获系统,OptiTrack获得单眼车的飞行轨迹数据。使用MATLAB将数据绘制到3D和2D图中。通过使用来自飞行轨迹数据的X,Y,Z坐标可以获得单层的身体角速率和线性速度的相关数据。使用SolidWorks勾勒出单层的一模型,以获得惯性的时刻。因此,可以将身体角速率,线性速度和惯性矩的值插入单眼车的运动方程中以确定力和时刻输出结果。得出结论,力和时刻的价值可以用于找到飞行单眼车的相关信息或行为,例如以一定角度俯仰所需的力量。力量和时刻也可以用于找到升力系数和时刻的值。

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