We present a novel approach to localizing radioactive material by cooperating Micro Aerial Vehicles (MAVs). Our approach utilizes a state-of-the-art single-detector Compton camera as a highly sensitive, yet miniature detector of ionizing radiation. The detector's exceptionally low weight (40 g) opens up new possibilities of radiation detection by a team of cooperating agile MAVs. We propose a new fundamental concept of fusing the Compton camera measurements to estimate the position of the radiation source in real time even from extremely sparse measurements. The data readout and processing are performed directly onboard and the results are used in a dynamic feedback to drive the motion of the vehicles. The MAVs are stabilized in a tightly cooperating swarm to maximize the information gained by the Compton cameras, rapidly locate the radiation source, and even track a moving radiation source.
翻译:本文提出了一种通过协作微型飞行器(MAVs)定位放射性材料的新方法。该方法采用先进的单探测器康普顿相机作为高灵敏度、微型化的电离辐射探测器。该探测器极低的重量(40克)为协作敏捷微型飞行器团队进行辐射探测开辟了新途径。我们提出了一种融合康普顿相机测量的新基础概念,即使从极其稀疏的测量数据中也能实时估计辐射源位置。数据读取与处理直接在机载设备上完成,结果通过动态反馈机制驱动飞行器运动。微型飞行器以紧密协作的集群形式保持稳定,以最大化康普顿相机获取的信息量,快速定位辐射源,甚至能够追踪移动辐射源。