Deng Qiwen, Zhang Zibang, Zhong Jingang
Opt Lett. 2020 Sep 1;45(17):4734-4737. doi: 10.1364/OL.399204.
Real-time 3-D tracking of a fast-moving object has found important applications in industry, traffic control, sports, biomedicine, defense, etc. However, it is difficult to adopt typical image-based object tracking systems in a fast-moving object tracking in real time and for a long duration, because reliable and robust image processing and analysis algorithms are often computationally exhausted, and limited storage and bandwidth can hardly fulfill the great demand of high-speed photography. Here we report an image-free 3-D tracking approach. The approach uses only two single-pixel detectors and a high-speed spatial light modulator for data acquisition. By illuminating the target moving object with six single-period Fourier basis patterns, the approach is able to analytically calculate the position of the object with the corresponding single-pixel measurements. The approach is low-cost, and data- and computation-efficient. We experimentally demonstrate that the proposed approach can detect and track a fast-moving object at a frame rate of 1666 frames per second by using a 10,000 Hz digital micromirror device. Benefiting from the wide working spectrum of single-pixel detectors, the reported approach might be applicable for hidden fast-moving object tracking.
快速移动物体的实时三维跟踪在工业、交通控制、体育、生物医学、国防等领域有着重要应用。然而,在快速移动物体的实时长时间跟踪中,采用典型的基于图像的物体跟踪系统存在困难,因为可靠且强大的图像处理和分析算法通常计算量极大,而有限的存储和带宽几乎无法满足高速摄影的巨大需求。在此,我们报告一种无图像的三维跟踪方法。该方法仅使用两个单像素探测器和一个高速空间光调制器进行数据采集。通过用六个单周期傅里叶基模式照射目标移动物体,该方法能够根据相应的单像素测量值解析计算出物体的位置。该方法成本低,数据和计算效率高。我们通过实验证明,使用10000赫兹数字微镜器件,所提出的方法能够以每秒1666帧的帧率检测和跟踪快速移动物体。受益于单像素探测器的宽工作光谱,所报道的方法可能适用于隐藏快速移动物体的跟踪。