论文标题
使用常规CMOS传感器,单发tof seens sub-mm精度
Single-shot ToF sensing with sub-mm precision using conventional CMOS sensors
论文作者
论文摘要
我们提出了一种新型的单发干涉式TOF摄像机,该摄像机针对动态物体的精确3D测量。相机概念基于合成波长干涉法,该技术允许在亚毫米深度精度下检索具有光学粗糙表面的对象的深度图。与常规的TOF摄像机相反,我们的设备仅使用现成的CCD/CMOS探测器,并以其本机芯片分辨率(截至今天,理论上最多可达20 MP及以后)。此外,我们可以单发出对象的完整3D模型,这意味着不需要暴露的时间顺序或时间照明调制(例如振幅或频率调制),这使我们的摄像头可在对象运动上进行稳健。 在本文中,我们介绍了新颖的相机概念,并展示了证明我们系统功能的首次测量。我们介绍具有> 2 MP点云分辨率(我们所使用的检测器的分辨率)和次级MM深度精度的小(CM大小)对象的3D测量值。我们还报告了一次“单光3D视频”的采集和第一个单杆“非线视线”测量。我们的技术具有具有动态物体运动的高精度应用的巨大潜力,例如在AR/VR中,工业检查,医学成像和通过雾中的散射介质(例如雾或人体组织)进行成像。
We present a novel single-shot interferometric ToF camera targeted for precise 3D measurements of dynamic objects. The camera concept is based on Synthetic Wavelength Interferometry, a technique that allows retrieval of depth maps of objects with optically rough surfaces at submillimeter depth precision. In contrast to conventional ToF cameras, our device uses only off-the-shelf CCD/CMOS detectors and works at their native chip resolution (as of today, theoretically up to 20 Mp and beyond). Moreover, we can obtain a full 3D model of the object in single-shot, meaning that no temporal sequence of exposures or temporal illumination modulation (such as amplitude or frequency modulation) is necessary, which makes our camera robust against object motion. In this paper, we introduce the novel camera concept and show first measurements that demonstrate the capabilities of our system. We present 3D measurements of small (cm-sized) objects with > 2 Mp point cloud resolution (the resolution of our used detector) and up to sub-mm depth precision. We also report a "single-shot 3D video" acquisition and a first single-shot "Non-Line-of-Sight" measurement. Our technique has great potential for high-precision applications with dynamic object movement, e.g., in AR/VR, industrial inspection, medical imaging, and imaging through scattering media like fog or human tissue.