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首页> 外文期刊>Optical engineering >Using a single-cube beam-splitter as a fringe pattern generator within a structured-light projection system for surface metrology
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Using a single-cube beam-splitter as a fringe pattern generator within a structured-light projection system for surface metrology

机译:在结构化光投影系统中使用单立方体分束器作为条纹图案生成器以进行表面计量

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摘要

We show how a sinusoidal fringe pattern can be obtained by using a single cube beam splitter based on the Gates' interferometer configuration. When an expanded and collimated laser beam hits the binding edge of a nonpolarizing cube beam splitter parallel to the splitter coating, it generates interference fringes at the exit due to the internal reflections and refractions of the laser beam passing through the cube. Unlike common digital projection systems, the proposed optical arrangement generates a perfectly sinusoidal and continuous fringe pattern, minimizing the problems associated with the discretization of a synthetic digital signal. The fast Fourier transform and phase-shifting techniques are used to demodulate the captured fringe patterns. Experimental results are presented for the three-dimensional shape reconstruction of the relief of a coin and of a spherical indentation on a piece of aluminum with a maximum height of about 150 μm. In addition, we evaluate the accuracy and resolution of the proposed measuring device: shape reconstruction accuracy is about 1.4% and axial resolution is 0.15 μm. Due to its simple and compact setup, the proposed system is particularly suited to be miniaturized.
机译:我们展示了如何使用基于盖茨干涉仪配置的单立方分束器获得正弦条纹图案。当扩展且准直的激光束撞击平行于分束器涂层的非偏振立方分束器的结合边缘时,由于穿过立方的激光束的内部反射和折射,它会在出口处产生干涉条纹。与普通的数字投影系统不同,所提出的光学装置可产生完美的正弦和连续条纹图案,从而最大程度地减少了与合成数字信号离散化相关的问题。快速傅立叶变换和相移技术用于解调捕获的条纹图案。提出了在硬币的浮雕和最大高度约为150μm的一块铝上进行球形压痕的三维形状重建的实验结果。此外,我们评估了所提出的测量设备的精度和分辨率:形状重建精度约为1.4%,轴向分辨率为0.15μm。由于其简单而紧凑的设置,所提出的系统特别适合于小型化。

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