Computer acquisition of 3D images utilizing dynamic speckles

A. Kamshilin, D. Semenov, E. Nippolainen, E. Raita
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Abstract

We present novel technique for fast non-contact and continuous profile measurements of rough surfaces by use of dynamic speckles. The dynamic speckle pattern is generated when the laser beam scans the surface under study. The most impressive feature of the proposed technique is its ability to work at extremely high scanning speed of hundreds meters per second. The technique is based on the continuous frequency measurements of the light-power modulation after spatial filtering of the scattered light. The complete optical-electronic system was designed and fabricated for fast measurement of the speckles velocity, its recalculation into the distance, and further data acquisition into computer. The measured surface profile is displayed in a PC monitor in real time. The response time of the measuring system is below 1 μs. Important parameters of the system such as accuracy, range of measurements, and spatial resolution are analyzed. Limits of the spatial filtering technique used for continuous tracking of the speckle-pattern velocity are shown. Possible ways of further improvement of the measurements accuracy are demonstrated. Owing to its extremely fast operation, the proposed technique could be applied for online control of the 3D-shape of complex objects (e.g., electronic circuits) during their assembling.
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利用动态散斑的三维图像的计算机采集
我们提出了一种利用动态散斑对粗糙表面进行快速非接触连续轮廓测量的新技术。当激光束扫描被研究表面时,会产生动态散斑图。该技术最令人印象深刻的特点是它能够以每秒数百米的极高扫描速度工作。该技术基于对散射光进行空间滤波后光功率调制的连续频率测量。设计并制作了完整的光电子系统,用于快速测量散斑速度,将其重新计算为距离,并将数据输入计算机。测量的表面轮廓实时显示在PC显示器上。测量系统的响应时间小于1 μs。对系统的精度、测量范围、空间分辨率等重要参数进行了分析。指出了空间滤波技术用于连续跟踪散斑图速度的局限性。指出了进一步提高测量精度的可能途径。由于其极快的运行速度,所提出的技术可以应用于复杂物体(如电子电路)在组装过程中的3d形状的在线控制。
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