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Preventing Irrigation Canal Breaches Using Small Unmanned Aerial System with Multispectral Payload

机译:使用多光谱有效载荷的小型无人机系统预防灌溉渠违规

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This article proposes a solution for detecting and localizing water leaks in irrigation canals using a small unmanned aerial system (UAS) with a multispectral payload to enable timely prevention of irrigation canal breaches. The current state of the art is to use multispectral imagery from satellites orhigh-altitude manned aircraft, but this lacks sufficient resolution to find seepage and erosion before a catastrophic failure occurs. The other current practice is manual ground inspection, which is time-consuming and expensive plus inspectors may not be able to getthrough the brush to fully inspect the canal. This project is adapting and expanding multispectral payloads developed for manned aircraft and applying them to an AirRobot AR180 and AR200 quadcopter UAS. A custom payload weighing 1 kg was designed and built, fusing two nadir-mounted thermal FLIR Vue Pro R and multispectral MicaSense RedEdge cameras and incorporating a forward-facing CMOS Camera Module 728 px × 488 px visual pilot camera. A total of 27 flights were flown at 13 sites in 4 irrigationdistricts in Garwood, TX, and the Lower Rio Grande Valley region to establish ramifications for UAS, payload, and concept of operations as well as to evaluate the proposed solution. The fused imagery identified all known surface leaks but was unable to detect any underground leaks. This work is expected to reduce leaks in irrigation canals which account for 10 % to 40 % of all water loss. A low-cost platform would enable the local water districts to fly their canals each month rather than annually and catch leaks before they cause major problems. The work is also expected to aid in detecting seepage in levees before they fail, thus preventing major damage from flooding.
机译:本文提出了一种使用具有多光谱有效载荷的小型无人机系统(UAS)来检测和定位灌溉渠中的漏水的解决方案,从而能够及时预防灌溉渠的破坏。当前的技术水平是使用来自卫星或高空载人飞机的多光谱图像,但是这缺乏足够的分辨率来在灾难性故障发生之前发现渗漏和侵蚀。当前的另一种做法是人工地面检查,这既费时又昂贵,而且检查员可能无法通过刷子完全检查运河。该项目正在适应和扩展为载人飞机开发的多光谱有效载荷,并将其应用于AirRobot AR180和AR200四旋翼无人机。设计并制造了一个自定义的有效载荷,重量为1 kg,将两个安装在最低点的热FLIR Vue Pro R和多光谱MicaSense RedEdge相机融合在一起,并集成了一个728 px×488 px的前视CMOS相机可视飞行员相机。在德克萨斯州加伍德(Garwood)和下里奥格兰德河谷地区的4个灌溉区的13个地点共进行了27次飞行,以建立无人机系统,有效载荷和作战概念的分叉,并评估所提出的解决方案。融合的图像识别出所有已知的地面泄漏,但无法检测到任何地下泄漏。预计这项工作将减少灌溉渠中的渗漏,这些渗漏占所有失水量的10%至40%。低成本的平台将使当地水域每月(而不是每年)飞越运河,并在造成重大问题之前捕获泄漏。预计这项工作还将有助于在堤坝失效之前检测其渗漏,从而防止洪水造成的重大破坏。

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