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Synthetic Vision for Rotorcraft: Low Level Flight

机译:旋翼飞机的合成视觉:低空飞行

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Two topics are discussed in this paper. The first is the Integrated Multi-sensor Synthetic Imagery System (IMSIS), being developed under an Army SBIR contract. The system updates on-board, pre-stored, terrain elevation data with 3D terrain elevation sensor data (such as radar). The system also merges 2D image contrast sensor data (such as infrared imagery) with the updated 3D terrain elevation data to render a synthetic image of the terrain on the rotorcraft pilot's display. The second topic is the testing of a new flight path marker, to show the pilot the predicted location of the aircraft with respect to the synthetic terrain (at 100m distance), as well as the predicted height above the terrain, the desired height above the terrain, and the point on the terrain the aircraft is expected to fly over. The Altitude and ground Track Predicting Flight Path Marker (ATP-FPM) symbol takes advantage of knowledge of terrain elevations ahead of the aircraft from a synthetic vision system, such as IMSIS. In simulation, the maximum low altitude error and maximum ground track error were both reduced by a factor of 2 with the ATP-FPM compared to the traditional instantaneous flight path marker. Pilot-to-pilot variations in performance were reduced and workload decreased with the ATP-FPM.
机译:本文讨论了两个主题。第一个是根据陆军SBIR合同开发的集成式多传感器合成图像系统(IMSIS)。该系统使用3D地形标高传感器数据(例如雷达)更新车载,预先存储的地形标高数据。该系统还将2D图像对比度传感器数据(例如红外图像)与更新的3D地形高程数据合并,以在旋翼飞机驾驶员的显示屏上呈现地形的合成图像。第二个主题是测试新的飞行路径标记,以向飞行员显示飞机相对于合成地形的预测位置(在100m距离处),以及该地形之上的预测高度,该目标在飞机上方的期望高度。地形,以及飞机有望飞越的地形点。高度和地面轨迹预测飞行路径标记(ATP-FPM)符号利用了综合视觉系统(例如IMSIS)在飞机前方的地形高程知识。在仿真中,与传统的瞬时飞行路径标记相比,使用ATP-FPM可以将最大低空误差和最大地面航迹误差都减少2倍。使用ATP-FPM可以减少飞行员之间的性能差异,并减少工作量。

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