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Airborne visual detection of small unmanned aircraft systems with and without ADS-B

机译:带有和不带有ADS-B的小型无人机系统的机载视觉检测

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One key challenge of integrating Unmanned Aircraft Systems (UAS) platforms into the National Airspace System is the potential for midair collisions between manned aircraft and the unmanned system. The lack of an established UAS benchmark for Detect, Sense and Avoid Systems put the preponderance of avoidance efforts on manned aircraft pilots to visually see and avoid potential collision threats. The small size, unusual configurations, and diverse operational applications of unmanned systems make UAS platforms difficult to visually identify. This paper sought to determine the mean visibility distance of small UAS systems (sUAS) to an alerted pilot flying a general aviation aircraft in visual meteorological conditions (VMC). The study evaluated mean visibility distance to various small UAS platforms based on a scripted set of UAS convergence conditions. The study utilized a quantitative, experimental design in which a general aviation aircraft was flown into a UAS operations area. Study pilots were instructed to locate a flying UAS aircraft without bearing assistance. Both the UAS and manned aircraft were assigned vertically de-conflicted altitudes with the UAS aircraft executing a series of converging and crossing courses relative to the manned aircraft. The distance at which the pilot visually located the UAS platform was timestamped and electronically recorded via a GPS tracking device. The various conditions were statistically analyzed to determine significant visibility differences among the various convergence conditions.
机译:将无人飞机系统(UAS)平台集成到国家空域系统中的一个关键挑战是有人机与无人系统之间可能会发生空中碰撞。缺乏针对检测,感测和回避系统的既定的UAS基准,使得有人驾驶飞机驾驶员能够以避开方式进行大量的视觉观察和避免潜在的碰撞威胁。无人机系统的小尺寸,不寻常的配置以及各种操作应用程序使UAS平台难以直观识别。本文试图确定小型UAS系统(sUAS)与在视觉气象条件(VMC)下驾驶通用航空飞机的机警飞行员的平均可见距离。这项研究基于一组脚本化的UAS收敛条件,评估了到各种小型UAS平台的平均可见距离。该研究利用了定量的实验设计,其中将通用航空飞机运入了UAS作战区域。研究飞行员被指示在没有轴承协助的情况下找到正在飞行的UAS飞机。 UAS和有人驾驶飞机都被分配了垂直去冲突的高度,UAS飞机执行了一系列相对于有人驾驶飞机的会聚和交叉航向。时间戳记飞行员在视觉上定位到UAS平台的距离并通过GPS跟踪设备进行电子记录。对各种条件进行了统计分析,以确定各种收敛条件之间的显着可见性差异。

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