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Design and Analysis of a Solar-Power Mini-UAV for Extended Endurance at Low Altitude

机译:太阳能迷你无人机的设计与分析,在低海拔地区扩展耐久性

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摘要

A solar-powered mini-UAV has been designed for long-endurance performance at low altitude, reflecting practical constraints from preceding experience of authors. The parametric analysis of the solar-power propulsion system is the primary interest of the present study, along with the power requirement estimation of the aircraft design. To cope with the wide range of flight speed, low-Reynolds number airfoils are selected, which possesses low drag characteristics at wide range of angle of attack. Aerodynamic design studies point out that maintaining Reynolds number above 100,000 is a requisite for extended flight operations of the solar-powered mini-UAV. The itemized drag prediction of the UAV design is performed based on the Xflr5 analysis of the UAV configuration. The solar modules and battery systems of the UAV design are represented as equivalent electric models, for the performance simulation of the solar-power propulsion system. Rigorous analyses on the seasonal solar radiation indicate that the capacity of the battery pack should be increased over 50% of the current design to provide continuous operation of the mini-UAV up to 60days.
机译:太阳能迷你无人机专为低空而设计的长期性能设计,反映了作者前面经验的实际限制。太阳能推进系统的参数分析是本研究的主要兴趣,以及飞机设计的电力需求估计。为了应对广泛的飞行速度,选择低雷诺数翼型,其在广泛的攻角范围内具有低阻力特性。空气动力学设计研究指出,维持雷诺数以上100,000的数字是太阳能迷你无人机的扩展飞行运营的必要条件。基于UAV配置的XFLR5分析来执行UAV设计的逐项拖动预测。 UAV设计的太阳能模块和电池系统表示为等效电模型,用于太阳能推进系统的性能模拟。季节性太阳辐射的严格分析表明电池组的容量应增加当前设计的50%以上,以便高达60天的迷你无人机的连续运行。

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