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Flight test results of helicopter approaches with trajectory guidance based on in-flight acquired LIDAR data

机译:基于飞行中获取的LIDAR数据的带轨迹引导的直升机进近飞行测试结果

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This paper presents flight test results for online calculated approach trajectories using DLR's manned research helicopter. This highly modified EC 135 is equipped with a commercial forward-looking Light Detection and Ranging (LIDAR) sensor with a range of 1 km. During an approach to an unmapped landing site, geo-referenced LIDAR samples are acquired and combined with a priori information. The resulting representation of the environment is used for the generation of trajectories which are collision free, technically feasible and acceptable for pilots. Once new samples are collected by the LIDAR sensor, the environment map is updated in real time and the trajectory is changed based on typical approach procedures if necessary. Due to experimental aspects, a manual trajectory following was used by providing the pilot with a "Tunnel-In-The-Sky" head down display including visual cues for spatial and speed guidance during the approach.
机译:本文介绍了使用DLR载人研究直升机对在线计算进近航迹进行的飞行测试结果。这款经过高度改进的EC 135配备了商业前瞻性的光检测和测距(LIDAR)传感器,测距范围为1 km。在接近未映射着陆点的过程中,获取了地理参考的LIDAR样本,并将其与先验信息组合。所得到的环境表示用于生成轨迹,这些轨迹是无碰撞的,技术上可行的并且对于飞行员而言是可接受的。一旦LIDAR传感器收集到新样品,就可以实时更新环境图,并根据需要根据典型进近程序更改轨迹。由于实验方面的原因,使用了手动轨迹跟踪技术,为飞行员提供了“空中隧道”平视显示器,包括在进近时用于空间和速度引导的视觉提示。

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