首页> 外文会议>Mechanisms and robotics conference;ASME international design engineering technical conferences and computers and information in engineering conference >PERFORMANCE CHARACTERIZATION OF MULTIFUNCTIONAL WINGS WITH INTEGRATED SOLAR CELLS FOR UNMANNED AIR VEHICLES
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PERFORMANCE CHARACTERIZATION OF MULTIFUNCTIONAL WINGS WITH INTEGRATED SOLAR CELLS FOR UNMANNED AIR VEHICLES

机译:集成有太阳能电池的多功能机翼用于无人驾驶汽车的性能表征

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Flapping wing unmanned air vehicles (UAVs) are small light weight vehicles that typically have short flight times due to the small size of the batteries that are used to power them. During longer missions, the batteries must be recharged. The lack of nearby electrical outlets severely limits the locations and types of missions that these UA Vs can be flown in. To improve flight time and eliminate the need for electrical outlets, solar cells can be used to harvest energy and charge/power the UAV. Robo Raven Ⅲ, a flapping wing UAV, was developed at the University of Maryland and consists of wings with integrated solar cells. This paper aims to investigate how the addition of solar cells affects the UAV. The changes in performance are quantified and compared using a load cell test as well as Digital Image Correlation (DIC). The UAV platform reported in this paper was the first flapping wing robotic bird that flew using energy harvested from on-board solar cells. Experimentally, the power from the solar cells was used to augment battery power and increase operational time.
机译:扑翼无人飞行器(UAV)是小型轻型飞行器,由于用于为其供电的电池尺寸较小,通常飞行时间较短。在更长的任务中,必须为电池充电。缺乏附近的电源插座严重限制了这些UA V可以执行的飞行任务的位置和类型。为缩短飞行时间并消除对电源插座的需求,太阳能电池可用于收集能量并为无人机充电/供电。 Robo RavenⅢ是扑翼式无人飞行器,是由马里兰大学开发的,由带有集成太阳能电池的机翼组成。本文旨在研究太阳能电池的添加如何影响无人机。使用称重传感器测试以及数字图像相关性(DIC)可以量化和比较性能变化。本文报道的无人机平台是使用从机载太阳能电池收集的能量飞行的第一只扑翼自动鸟。实验上,来自太阳能电池的功率被用来增加电池功率并增加工作时间。

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