Electro-Optical Sensor Selection based on Flight Test for Detect-and-Avoid in Phase Two UAS

Jaehyun Lee, D. Shim, Seung Joo Kim
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Abstract

This paper proposed a proper Electro-Optical (EO)-based hardware of aircraft detection system to be satisfied with Detect-and-Avoid (DAA) Minimum Operational Performance Standard (MOPS) and latest researches. EO sensor is a typical Low Cost, Size, Weight, and Power (Low C-SWaP) sensor for low-speed Unmanned Aircraft System (UAS) between 40 and 100 kts. The Low C-SWaP sensor is expected for surveillance and detection of non-cooperative aircraft for safe UAS and Remotely Piloted Aircraft System (RPAS) operation. The proposed EO hardware system is improved and validated by flight test. The effort of reduction of detection range for phase two is considered for sensor configuration. The flight test data was collected to apply the new definition of Well Clear for detection range reduction. Post-processing data with a new variable of Well Clear definition is provided to evaluate the proposed EO hardware. Finally, 6 EO sensors are installed to cover horizontal ± 110 degrees and vertical ± 15 degrees with about 4 km detection range.
基于第二阶段无人机飞行试验的光电传感器选择
本文提出了一种合适的光电检测系统硬件结构,以满足DAA最小操作性能标准(MOPS)和最新的研究成果。EO传感器是一种典型的低成本,尺寸,重量和功率(低C-SWaP)传感器,用于40至100节之间的低速无人机系统(UAS)。低C-SWaP传感器预计用于监视和检测非合作飞机,以确保无人机和遥控飞机系统(RPAS)的安全运行。通过飞行试验对所提出的EO硬件系统进行了改进和验证。考虑了传感器结构对第二阶段探测距离减小的影响。收集飞行试验数据,将新的Well Clear定义应用于减少探测距离。提供了具有Well Clear定义的新变量的后处理数据来评估所提出的EO硬件。最后,安装了6个EO传感器,覆盖水平±110度和垂直±15度,探测范围约为4公里。
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