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首页> 外文期刊>Pure and Applied Geophysics >Technical Report: Unmanned Helicopter Solution for Survey-Grade Lidar and Hyperspectral Mapping
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Technical Report: Unmanned Helicopter Solution for Survey-Grade Lidar and Hyperspectral Mapping

机译:技术报告:测量级激光雷达和高光谱映射的无人直升机解决方案

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摘要

Recent development of light-weight unmanned airborne vehicles (UAV) and miniaturization of sensors provide new possibilities for remote sensing and high-resolution mapping. Mini-UAV platforms are emerging, but powerful UAV platforms of higher payload capacity are required to carry the sensors for survey-grade mapping. In this paper, we demonstrate a technological solution and application of two different payloads for highly accurate and detailed mapping. The unmanned airborne system (UAS) comprises a Scout B1-100 autonomously operating UAV helicopter powered by a gasoline two-stroke engine with maximum take-off weight of 75 kg. The UAV allows for integrating of up to 18 kg of a customized payload. Our technological solution comprises two types of payload completely independent of the platform. The first payload contains a VUX-1 laser scanner (Riegl, Austria) and a Sony A6000 E-Mount photo camera. The second payload integrates a hyperspectral push-broom scanner AISA Kestrel 10 (Specim, Finland). The two payloads need to be alternated if mapping with both is required. Both payloads include an inertial navigation system xNAV550 (Oxford Technical Solutions Ltd., United Kingdom), a separate data link, and a power supply unit. Such a constellation allowed for achieving high accuracy of the flight line post-processing in two test missions. The standard deviation was 0.02 m (XY) and 0.025 m (Z), respectively. The intended application of the UAS was for high-resolution mapping and monitoring of landscape dynamics (landslides, erosion, flooding, or crops growth). The legal regulations for such UAV applications in Switzerland and Slovakia are also discussed.
机译:最近的轻量度无人机(UAV)和传感器小型化的发展为遥感和高分辨率绘图提供了新的可能性。迷你UAV平台正在出现,但需要强大的无人机平台,以便携带传感器进行测量级映射。在本文中,我们展示了一种技术解决方案和应用两种不同的有效载荷,用于高精度和详细的映射。无人驾驶机载系统(UAS)包括由汽油两冲程发动机提供动力的SCOUT B1-100,最大耗材重量为75千克。 UAV允许为最多18公斤的自定义有效载荷集成。我们的技术解决方案包括两种类型的有效载荷完全独立于平台。第一个有效载荷包含VUX-1激光扫描仪(RIEGL,奥地利)和索尼A6000电子挂式照片相机。第二个有效载荷集成了一个高光谱推动扫描扫描仪AISA Kestrel 10(Specim,Finland)。如果需要两者映射,需要交替两个有效载荷。两种有效载荷包括惯性导航系统XNAV550(牛津技术解决方案有限公司,英国),单独的数据链路和电源单元。这种星座允许在两个测试任务中实现高精度的飞行后处理。标准偏差分别为0.02μm(xy)和0.025μm(z)。 UA的预期应用是用于高分辨率映射和监测景观动态(山体滑坡,侵蚀,洪水或作物增长)。还讨论了瑞士和斯洛伐克这样免维申请的法律规定。

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