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Flight-test evaluation of small form-factor LiDAR and radar sensors for sUAS detect-and-avoid applications

机译:用于sUAS检测和避免应用的小型LiDAR和雷达传感器的飞行测试评估

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Despite well over a decade of intensive research and development efforts, detect-and-avoid (DAA) technology remains in an immature state for medium and large unmanned aerial systems (UAS) and is in its very infancy for small UAS (sUAS). Routine Beyond Visual Line-of-Sight (BVLOS) operations will not be achieved until this technological impasse has been surpassed. Although a multi-system/multi-sensor approach is known to be the robust solution, sUAS platforms are challenged to host such an equipment suite in addition to their revenue-generating payload for commercial applications. Recent developments in small form-factor LiDAR and radar sensors may prove to be vital components in the overall DAA solution for sUAS. These types of sensors are being developed primarily for the autonomous ground vehicle market, but may be adapted for UAS applications. This paper documents a series of ground and flight tests conducted to evaluate the performance of both a small form-factor LiDAR and radar sensors. Obstacle detection range versus obstacle size is determined for both sensors in static and dynamic flight modes.
机译:尽管经过十多年的深入研究和开发,但对于中型和大型无人机系统(UAS)而言,“检测与避免”(DAA)技术仍处于不成熟状态,而对于小型UAS(sUAS)则处于起步阶段。在超出技术僵局之前,将无法实现超出视线范围的常规操作。尽管已知多系统/多传感器方法是可靠的解决方案,但sUAS平台除了要为商业应用产生收入的有效载荷外,还面临着托管此类设备套件的挑战。小型LiDAR和雷达传感器的最新发展可能被证明是sUAS整个DAA解决方案的重要组成部分。这些类型的传感器主要针对自动地面车辆市场而开发,但可能适用于UAS应用。本文记录了一系列地面和飞行测试,以评估小型LiDAR和雷达传感器的性能。确定在静态和动态飞行模式下传感器的障碍物检测范围与障碍物大小之间的关系。

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