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A system for obstacle detection during rotorcraft low-altitude flight

机译:旋翼飞机低空飞行中障碍物检测系统

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Airborne vehicles such as rotorcraft must avoid obstacles such as antennas, towers, poles, fences, tree branches, and wires strung across the flight path. The paper analyzes the requirements of an obstacle detection system for rotorcrafts in low-altitude Nap-of-the-Earth flight based on various rotorcraft motion constraints. It argues that an automated obstacle detection system for the rotorcraft scenario should include both passive and active sensors. Consequently, it introduces a maximally passive system which involves the use of passive sensors (TV, FLIR) as well as the selective use of an active (laser) sensor. The passive component is concerned with estimating range using optical flow-based motion analysis and binocular stereo in conjunction with inertial navigation system information. Experimental results obtained using land vehicle data illustrate the particular approach to motion analysis.
机译:诸如旋翼飞机之类的机载车辆必须避开障碍物,例如天线,塔架,电线杆,栅栏,树枝和横穿飞行路径的电线。基于各种旋翼飞机的运动约束,本文分析了旋翼飞机在低海拔地空飞行中的障碍物检测系统的要求。它认为,用于旋翼飞机场景的自动障碍物检测系统应同时包括无源和有源传感器。因此,它引入了最大程度的无源系统,其中涉及使用无源传感器(TV,FLIR)以及有选择地使用有源(激光)传感器。无源组件与使用基于光流的运动分析和双目立体声结合惯性导航系统信息来估计距离有关。使用陆地车辆数据获得的实验结果说明了运动分析的特定方法。

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