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Development and Application of an Autonomous Unmanned Aerial Vehicle for Precise Aerobiological Sampling above Agricultural Fields

机译:农用高空作业自动无人采样机的研制与应用

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Remote-controlled (RC) unmanned aerial vehicles (UAVs) have been used to study the movement of agricultural threat agents (e.g., plant and animal pathogens, invasive weeds, and exotic insects) above crop fields, but these RC UAVs are operated entirely by a ground-based pilot and often demonstrate large fluctuations in sampling height, sampling pattern, and sampling speed. In this paper, we describe the development and application of an autonomous UAV for precise aerobiological sampling tens to hundreds of meters above agricultural fields. We equipped a Senior Telemaster UAV with four aerobiological sampling devices and a MicroPilot-based autonomous system, and we conducted 25 sampling flights for potential agricultural threat agents at Virginia Tech's Kentland Farm. To determine the most appropriate sampling path for aerobiological sampling above crop fields with an autonomous UAV, we explored five different sampling patterns, including multiple global positioning system (GPS) waypoints plotted over a variety of spatial scales. An orbital sampling pattern around a single GPS waypoint exhibited high positional accuracy and produced altitude standard deviations ranging from 1.6 to 2.8 m.rnAutonomous UAVs have the potential to extend the range of aerobiological sampling, improve positional accuracy of sampling paths, and enable coordinated flight with multiplernUAVs sampling at different altitudes.
机译:遥控(RC)无人飞行器(UAV)已用于研究农作物威胁因素(例如动植物病原体,入侵性杂草和外来昆虫)在农田上方的运动,但这些RC UAV完全由地面飞行员,通常在采样高度,采样模式和采样速度方面表现出较大的波动。在本文中,我们描述了自主无人机的开发和应用,该无人机可在农业领域之上数十米至数百米的范围内进行精确的航空生物采样。我们为一台高级Telemaster无人机配备了四个航空生物学采样设备和一个基于MicroPilot的自治系统,并且在弗吉尼亚理工大学的肯特兰农场为潜在的农业威胁代理进行了25次采样飞行。为了确定使用自主无人机对作物田地进行空气生物学采样的最合适采样路径,我们探索了五种不同的采样模式,包括在各种空间尺度上绘制的多个全球定位系统(GPS)航点。单个GPS航路点周围的轨道采样模式显示出较高的位置精度,并产生了1.6至2.8 m的高度标准偏差。rn自动无人飞行器具有扩展航空生物学采样范围,提高采样路径的定位精度以及实现与在不同高度采样的多个UAV。

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