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首页> 外文期刊>IEEE Transactions on Vehicular Technology >On the Tradeoff Between Electrical Power Consumption and Flight Performance in Fixed-Wing UAV Autopilots
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On the Tradeoff Between Electrical Power Consumption and Flight Performance in Fixed-Wing UAV Autopilots

机译:固定翼无人机自动驾驶的电力消耗与飞行性能之间的权衡

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This paper sets out a study of the autopilot design for fixed wing Unmanned Aerial Vehicles (UAVs) taking into account the aircraft stability, as well as the power consumption as a function of the selected control strategy. To provide some generality to the outcomes of this study, construction of a reference small-UAV model, based on averaging the main aircraft defining parameters, is proposed. Using such a reference model of small, fixed-wing UAVs, different control strategies are assessed, especially with a view towards enlarging the controllers' sampling time. A beneficial consequence of this sample time enlargement is that the clock rate of the UAV autopilots may be proportionally reduced. This reduction in turn leads directly to decreased electrical power consumption. Such energy saving becomes proportionally relevant as the size and power of the UAV decrease, with benefits of lengthening battery life and, therefore, the flight endurance. Additionally, through the averaged model, which is derived from both published data and computations made from actual data captured from real UAVs, it is shown that behavior predictions beyond that of any particular UAV model may be extrapolated.
机译:本文针对固定翼无人飞行器(UAV)的自动驾驶仪设计进行了研究,其中考虑了飞机的稳定性以及功耗与所选控制策略的关系。为了给这项研究的结果提供一些通用性,提出了一种基于平均主飞机定义参数的参考小型无人飞行器模型的构建。使用小型固定翼无人机的参考模型,可以评估不同的控制策略,尤其是为了增加控制器的采样时间。这种采样时间扩大的有益结果是,UAV自动驾驶仪的时钟速率可能会成比例地降低。这种减少又直接导致减少的电能消耗。随着UAV尺寸和功率的减小,这种节能措施将成比例地变得有意义,它具有延长电池寿命以及延长飞行寿命的好处。另外,通过从发布的数据和从真实的无人机获取的实际数据进行的计算得出的平均模型,可以看出,可以对超出任何特定无人机模型的行为预测进行推断。

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