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Navigation Doppler lidar sensor for precision altitude and vector velocity measurements: flight test results

机译:导航多普勒激光雷达传感器,用于精确的高度和矢量速度测量:飞行测试结果

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An all fiber Navigation Doppler Lidar (NDL) system is under development at NASA Langley Research Center (LaRC) for precision descent and landing applications on planetary bodies. The sensor produces high-resolution line of sight range, altitude above ground, ground relative attitude, and high precision velocity vector measurements. Previous helicopter flight test results demonstrated the NDL measurement concepts, including measurement precision, accuracies, and operational range. This paper discusses the results obtained from a recent campaign to test the improved sensor hardware, and various signal processing algorithms applicable to real-time processing. The NDL was mounted in an instrumentation pod aboard an Erickson Air-Crane helicopter and flown over various terrains. The sensor was one of several sensors tested in this field test by NASA's Autonomous Landing and Hazard Avoidance Technology (ALHAT) project.
机译:NASA兰利研究中心(LaRC)正在开发一种全光纤导航多普勒激光雷达(NDL)系统,以用于行星体的精确下降和着陆应用。该传感器可产生高分辨率的视线范围,地面高度,地面相对姿态以及高精度速度矢量测量值。先前的直升机飞行测试结果证明了NDL测量概念,包括测量精度,准确性和操作范围。本文讨论了从最近一次测试改进的传感器硬件的活动中获得的结果,以及适用于实时处理的各种信号处理算法。 NDL安装在Erickson Air-Crane直升机上的仪表舱中,并飞越各种地形。该传感器是由美国国家航空航天局(NASA)的自主着陆和避险技术(ALHAT)项目在该现场测试中测试的几种传感器之一。

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