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Failure Detection of Composites with Control System Corrective Response in Drone System Applications ?

机译:控制系统校正响应的复合材料失效检测在无人机系统中的应用

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The paper describes a novel method for the detection of damage in carbon composites as used in drone frames. When damage is detected a further novel corrective response is initiated in the quadcopter flight controller to switch from a four-arm control system to a three-arm control system. This is made possible as a symmetrical frame is utilized, which allows for a balanced weight distribution between both the undamaged quadcopter and the fallback tri-copter layout. The resulting work allows for continued flight where this was not previously possible. Further developing work includes improved flight stability with the aid of an underslung load model. This is beneficial to the quadcopter as a damaged arm attached to the main body by the motor wires behaves as an underslung load. The underslung load works are also transferable in a dual master and slave drone system where the master drone transports a smaller slave drone by a tether, which acts as an underslung load.
机译:该论文描述了一种用于无人机框架中的碳复合材料损伤检测的新方法。当检测到损坏时,在四旋翼飞行控制器中会启动另一个新颖的纠正响应,以从四臂控制系统切换到三臂控制系统。由于使用了对称的框架,因此可以做到这一点,从而可以在未损坏的四轴飞行器和后备三轴飞行器布局之间实现平衡的重量分配。由此产生的工作使以前无法做到的继续飞行成为可能。进一步的开发工作包括借助欠负荷模型提高飞行稳定性。这对四轴飞行器是有益的,因为通过电机线连接到主体的损坏的手臂表现为下摆负载。悬吊负载工作也可以在双主,从无人机系统中转移,在该系统中,主无人机通过系绳运输较小的从属无人机,该绳索充当悬吊负载。

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