Gyongy Istvan, Dutton Neale A W, Henderson Robert K
School of Engineering, Institute for Integrated Micro and Nano Systems, The University of Edinburgh, Edinburgh EH9 3FF, UK.
STMicroelectronics, Imaging Division, Tanfield, Edinburgh EH3 5DA, UK.
Sensors (Basel). 2018 Jan 23;18(2):323. doi: 10.3390/s18020323.
Quanta Imager Sensors provide photon detections at high frame rates, with negligible read-out noise, making them ideal for high-speed optical tracking. At the basic level of bit-planes or binary maps of photon detections, objects may present limited detail. However, through motion estimation and spatial reassignment of photon detections, the objects can be reconstructed with minimal motion artefacts. We here present the first demonstration of high-speed two-dimensional (2D) tracking and reconstruction of rigid, planar objects with a Quanta Image Sensor, including a demonstration of depth-resolved tracking.
量子成像传感器能够以高帧率进行光子检测,读出噪声可忽略不计,使其成为高速光学跟踪的理想选择。在光子检测的位平面或二进制映射的基本层面上,物体可能呈现的细节有限。然而,通过运动估计和光子检测的空间重新分配,可以以最小的运动伪影重建物体。我们在此展示了首次使用量子图像传感器对刚性平面物体进行高速二维(2D)跟踪和重建,包括深度分辨跟踪的演示。