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Real-time visual sensing system achieving high-speed 3D particle tracking with nanometer resolution

机译:实时视觉传感系统,可实现纳米分辨率的高速3D粒子跟踪

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摘要

This paper presents a real-time visual sensing system, which is created to achieve high-speed three-dimensional (3D) motion tracking of microscopic spherical particles in aqueous solutions with nanometer resolution. The system comprises a complementary metal-oxide-semiconductor (CMOS) camera, a field programmable gate array (FPGA), and real-time image processing programs. The CMOS camera has high photosensitivity and superior SNR. It acquires images of 128 × 120 pixels at a frame rate of up to 10,000 frames per second (fps) under the white light illumination from a standard 100 W halogen lamp. The real-time image stream is downloaded from the camera directly to the FPGA, wherein a 3D particle-tracking algorithm is implemented to calculate the 3D positions of the target particle in real time. Two important objectives, i.e., real-time estimation of the 3D position matches the maximum frame rate of the camera and the timing of the output data stream of the system is precisely controlled, are achieved. Two sets of experiments were conducted to demonstrate the performance of the system. First, the visual sensing system was used to track the motion of a 2 μm polystyrene bead, whose motion was controlled by a three-axis piezo motion stage. The ability to track long-range motion with nanometer resolution in all three axes is demonstrated. Second, it was used to measure the Brownian motion of the 2 μm polystyrene bead, which was stabilized in aqueous solution by a laser trapping system.
机译:本文提出了一种实时视觉传感系统,该系统旨在实现具有纳米分辨率的水溶液中的微观球形颗粒的高速三维(3D)运动跟踪。该系统包括一个互补金属氧化物半导体(CMOS)摄像机,一个现场可编程门阵列(FPGA)和实时图像处理程序。 CMOS相机具有高感光度和出色的SNR。在标准的100 W卤素灯的白光照明下,它以高达10,000帧/秒的帧速率获取128×120像素的图像。实时图像流从摄像机直接下载到FPGA,其中实现了3D粒子跟踪算法以实时计算目标粒子的3D位置。实现了两个重要目标,即3D位置的实时估计与摄像机的最大帧速率相匹配,并且系统的输出数据流的时序得到了精确控制。进行了两组实验以演示系统的性能。首先,视觉传感系统用于跟踪2μm聚苯乙烯珠的运动,该珠的运动由三轴压电运动平台控制。演示了在所有三个轴上以纳米分辨率跟踪远程运动的能力。其次,它用于测量2μm聚苯乙烯珠的布朗运动,该运动通过激光捕获系统稳定在水溶液中。

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