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Doppler Lidar Sensor for Precision Navigation in GPS-Deprived Environment

机译:多普勒激光雷达传感器,用于GPS匮乏环境中的精确导航

摘要

Landing mission concepts that are being developed for exploration of solar system bodies are increasingly ambitious in their implementations and objectives. Most of these missions require accurate position and velocity data during their descent phase in order to ensure safe, soft landing at the pre-designated sites. Data from the vehicle's Inertial Measurement Unit will not be sufficient due to significant drift error after extended travel time in space. Therefore, an onboard sensor is required to provide the necessary data for landing in the GPS-deprived environment of space. For this reason, NASA Langley Research Center has been developing an advanced Doppler lidar sensor capable of providing accurate and reliable data suitable for operation in the highly constrained environment of space. The Doppler lidar transmits three laser beams in different directions toward the ground. The signal from each beam provides the platform velocity and range to the ground along the laser line-of-sight (LOS). The six LOS measurements are then combined in order to determine the three components of the vehicle velocity vector, and to accurately measure altitude and attitude angles relative to the local ground. These measurements are used by an autonomous Guidance, Navigation, and Control system to accurately navigate the vehicle from a few kilometers above the ground to the designated location and to execute a gentle touchdown. A prototype version of our lidar sensor has been completed for a closed-loop demonstration onboard a rocket-powered terrestrial free-flyer vehicle.
机译:正在开发的用于探索太阳系物体的着陆任务概念在其实现和目标方面越来越雄心勃勃。这些任务多数都需要在下降阶段提供准确的位置和速度数据,以确保在预定地点安全,软着陆。由于在太空中延长行驶时间后出现明显的漂移误差,因此车辆惯性测量单元的数据不足。因此,需要一个车载传感器来提供必要的数据,以便在缺少GPS的空间中着陆。因此,NASA兰利研究中心一直在开发一种先进的多普勒激光雷达传感器,该传感器能够提供准确而可靠的数据,适合在空间非常受限的环境中运行。多普勒激光雷达向地面发射三个方向不同的激光束。来自每个光束的信号沿着激光视线(LOS)提供平台速度和到达地面的范围。然后将六个LOS测量值组合起来,以确定车辆速度矢量的三个分量,并准确测量相对于本地地面的高度和姿态角。自主的制导,导航和控制系统使用这些测量值,将车辆从地面上方几公里准确地导航到指定位置,并进行轻柔的着陆。我们的激光雷达传感器的原型版本已经完成,用于在火箭动力地面自由飞行器上进行闭环演示。

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