论文标题
具有单芯片毫米波雷达未修饰的无人机的3-D运动捕获
3-D Motion Capture of an Unmodified Drone with Single-chip Millimeter Wave Radar
论文作者
论文摘要
3-D中航空机器人的准确运动捕获是在室内环境(例如仓库或工厂)中自动操作的关键推动力,并在这些地区推动了前进的研究。目前,最常用的解决方案是光学运动捕获(例如Vicon)和Ultrawideband(UWB),但由于其要求多个摄像机/传感器在跟踪区域附近,因此这些解决方案是昂贵且繁琐的部署。他们还要求对无人机进行修改以携带主动或被动标记。在这项工作中,我们提出了一个廉价的系统,可以基于单芯片毫米波(MMWave)雷达快速安装。重要的是,由于我们利用旋转螺旋桨的多普勒信号,因此无需修改或配备任何标记。此外,从单个点可以进行3-D跟踪,从而大大简化了部署。我们开发了一个新颖的深神经网络,并在10Hz处展示了十分仪的3D跟踪,比经典基线取得更好的性能。我们的希望是,这种低成本系统将采取促进廉价的无人机研究并提高自主权。
Accurate motion capture of aerial robots in 3-D is a key enabler for autonomous operation in indoor environments such as warehouses or factories, as well as driving forward research in these areas. The most commonly used solutions at present are optical motion capture (e.g. VICON) and Ultrawideband (UWB), but these are costly and cumbersome to deploy, due to their requirement of multiple cameras/sensors spaced around the tracking area. They also require the drone to be modified to carry an active or passive marker. In this work, we present an inexpensive system that can be rapidly installed, based on single-chip millimeter wave (mmWave) radar. Importantly, the drone does not need to be modified or equipped with any markers, as we exploit the Doppler signals from the rotating propellers. Furthermore, 3-D tracking is possible from a single point, greatly simplifying deployment. We develop a novel deep neural network and demonstrate decimeter level 3-D tracking at 10Hz, achieving better performance than classical baselines. Our hope is that this low-cost system will act to catalyse inexpensive drone research and increased autonomy.