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High-speed scanning stroboscopic fringe-pattern projection technology for three-dimensional shape precision measurement

机译:高速扫描频闪条纹图形投影技术,用于三维形状精度测量

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摘要

A high-speed scanning stroboscopic fringe-pattern projection system is designed. A high-speed rotating polygon mirror and a line-structured laser cooperate to produce stable and unambiguous stroboscopic fringe patterns. The system combines the rapidity of the grating projection with the high accuracy of the line-structured laser light source. The fringe patterns have fast frame rate, great density, high precision, and high brightness, with convenience and accuracy in adjusting brightness, frequency, line-width, and the amount of phase shift. The characteristics and the stability of this system are verified by experiments. Experimental results show that the finest linewidth can reach 40 μm and that the minimum fringe cycle is 80 μm. Circuit modulation makes the light source system flexibly adjustable, easy to control in real time, and convenient to project various fringe patterns. Combined with different light intensity adjustment algorithms and 3D computation models, the 3D topography with high accuracy can be obtained for objects measured under different environments or objects with different sizes, morphologies, and optical properties. The proposed system shows a broad application prospect for fast 3D shape precision measurements, particularly in the industrial field of 3D online detection for precision devices.
机译:设计了一种高速扫描频闪条纹图形投影系统。高速旋转多面镜和线结构激光器共同产生稳定且清晰的频闪条纹图案。该系统结合了光栅投影的快速性和线结构激光光源的高精度。条纹图案具有快速的帧速率,高密度,高精度和高亮度,在调节亮度,频率,线宽和相移量方面具有便利性和准确性。通过实验验证了该系统的特性和稳定性。实验结果表明,最细的线宽可以达到40μm,最小条纹周期为80μm。电路调制使光源系统灵活可调,易于实时控制,并且方便投射各种条纹图案。结合不同的光强度调整算法和3D计算模型,可以针对在不同环境下测量的物体或具有不同大小,形态和光学特性的物体获得高精度的3D地形。所提出的系统显示出快速3D形状精度测量的广阔应用前景,尤其是在3D在线检测精密设备的工业领域。

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