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Benchmarking a Lidar Obstacle Perception System for Aircraft Autonomy

机译:用于飞机自主式激光障碍障碍的障碍障碍系统

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The limits of an unmanned aerial vehicle's (UAV) obstacle detection system place fundamental limits on the UAV's ability to fly safely. Any certification of aviation grade autonomy will require benchmarking of the obstacle perception sub-system and its effect on UAV performance. Consequently, as Near Earth Autonomy has built a state of the art lidar based obstacle perception system, it has also been developing benchmarks and performing flight tests to understand how the theoretical capabilities of its perception suite translates into operational limits on air frames using its perception suite. This paper analyses these obstacle perception guarantees through the lens of flight testing Near Earth Autonomy's m4 perception suite. The m4 perception suite uses a scanning, nodding lidar to enable safe autonomous take off, flight, and landing. It was tested on a UH-1 helicopter as a part of the Office of Naval Research's (ONR) Autonomous Aerial Cargo/Utility System (AAOUS) program. The m4 perception suite enables safe high altitude cruise flight by perceiving all large obstacles within an 800 meter range of the helicopter. As the helicopter nears the ground the perceptual guarantees required for cruise flight speeds are violated by the smallest, and most difficult obstacles: wires. The perception suite still enables safe flight by using specialized algorithms to detect wires up to 400 meters away while travelling at 30m/s. Through over 80 flights in 8 different locations, we test the obstacle perception assumptions, see how the assumptions change, and understand how m4's capabilities impact full autonomous helicopter performance.
机译:无人驾驶飞行器(UAV)障碍物检测系统的限制将基本限制安全地防止安全的飞行能力。任何航空级自主权认证都需要障碍感知子系统的基准及其对无人机性能的影响。因此,由于靠近地球自治建立了最先进的基于艺术的障碍物感知系统,它还一直在开发基准测试和执行飞行测试,以了解其感知套件的理论能力如何使用其感知套件转化为空中框架的操作限制。本文通过靠近地球自治的M4感知套件,通过飞行测试镜头分析了这些障碍感知。 M4感知套件使用扫描,点头LIDAR来实现安全自主起飞,飞行和着陆。它是在UH-1直升机上测试为海军研究办公室(ONR)自动空中货物货物/实用系统(AAOUS)计划的一部分。 M4感知套房通过在直升机范围内的800米范围内的所有大障碍物来实现安全的高海拔巡航飞行。随着直升机接近地面,巡航飞行速度所需的感知担保被最小,最困难的障碍物侵犯:电线。 Perception Suite仍然可以通过使用专用算法来检测高达400米的电线在30米/秒的同时检测电线。通过80多个航班,在8个不同的位置,我们测试障碍的感知假设,了解假设的变化如何,并了解M4的能力如何影响全自动直升机性能。

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