Automatic detection of flying drones is a key issue where its presence, especially if unauthorized, can create risky situations or compromise security. Here, we design and evaluate a multi-sensor drone detection system. In conjunction with standard video cameras and microphone sensors, we explore the use of thermal infrared cameras, pointed out as a feasible and promising solution that is scarcely addressed in the related literature. Our solution integrates a fish-eye camera as well to monitor a wider part of the sky and steer the other cameras towards objects of interest. The sensing solutions are complemented with an ADS-B receiver, a GPS receiver, and a radar module. However, our final deployment has not included the latter due to its limited detection range. The thermal camera is shown to be a feasible solution as good as the video camera, even if the camera employed here has a lower resolution. Two other novelties of our work are the creation of a new public dataset of multi-sensor annotated data that expands the number of classes compared to existing ones, as well as the study of the detector performance as a function of the sensor-to-target distance. Sensor fusion is also explored, showing that the system can be made more robust in this way, mitigating false detections of the individual sensors.
翻译:飞行无人机的自动探测是一个关键问题,其存在,特别是未经授权的飞行无人机的出现可能会造成危险局面或危及安全。在这里,我们设计和评价一个多传感器无人机探测系统。我们与标准的摄像头和麦克风传感器一起,探索使用热红外摄像头,指出这是一个可行和有希望的解决办法,相关文献很少涉及。我们的解决方案将鱼眼摄像头结合起来,并监测更广大的天空,将其他摄像头引导到感兴趣的物体上。遥感解决方案得到了一个ADS-B接收器、全球定位系统接收器和雷达模块的补充。然而,我们的最后部署没有包括后者,因为其探测范围有限。热摄像像像摄影机一样是可行的解决办法,即使这里使用的摄像头的分辨率较低。我们工作的另外两个新颖之处是创建一个新的多传感器公共数据集,与现有传感器相比,扩大类数的附加说明数据,以及作为传感器到目标距离功能的探测器性能研究。但是,由于探测范围有限,我们的最后部署不包括后者。热相摄像头显示像头和摄像机一样是可行的可行解决办法。还探索了更可靠的系统,以降低感官的传感器。