基于摆摆理论的无人机试验台设计与制造

Y. Nogoud, T. O. Aburass, A. Ibrahim, Denan Murtada Abdelrasheed, Reem Mustafa Ali
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引用次数: 0

摘要

转动惯量的准确取值对于设计诸如飞机飞行控制系统之类的一般机械部件具有至关重要的作用。这就是为什么需要一个精确的转动惯量值。用纸板设计和制作了一个试验台,然后开发了用于木材的试验台。实验进行了,以得到最终的形状和产品的试验台,它的制造尺寸为2.7x2.5米,支架尺寸为60x60厘米,可承受高达10公斤。此外,一个电子电路已被用来测量振荡周期。求出矩形木块与无人机的转动惯量。对木块的转动惯量进行了分析和实验测量,通过数值对比发现,在X轴上误差在1% ~ 5%之间,在Y轴上误差在-6% ~ 7%之间。对于无人机,惯性矩在X轴上的误差率为2% ~ 5%,在Y轴上的误差率为11% ~ 14%。值得注意的是,附加重量越大,设备的精度越高。
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Design and Fabrication of a Testing Rig for UAV Using Pendulum Theory
The determination of an accurate value of a moment of inertia plays a vital role in designing decent mechanical parts as general such as a flight control system for aircraft. This why an accurate value for moment of inertia is needed. A test rig was designed and made form cardboard and then developed for wood. Experiments were carried out, to get to the final shape and product for the test rig, and it was manufactured with dimensions of 2.7x2.5 meters and with a holder dimension of 60x60 cm that bears up to 10 kg. Moreover, an electronic circuit has been used to measure the period of oscillations. The moment of inertia of a rectangular block of wood and a UAV is found. The moment of inertia was measured analytically and experimentally for the block of wood, and by comparing the values it founds that the error ratio from 1%to5% in X axis and -6% to 7% in Y axis. For the UAV the moment of inertia’s error ratio in X axis from 2% to 5% and in Y axis from 11% to 14%. It is noticed that the greater the additional weight, the greater the accuracy of the device.
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