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Integrated Speckle-Based Displacement Measurement for Lateral Scanning White Light Interferometry

机译:基于横向扫描白色光干涉测量的集成散斑的位移测量

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摘要

Lateral scanning white light interferometry (LSWLI) is a promising technique for high-resolution topography measurements on moving surfaces. To achieve resolutions typically associated with white light interferometry, accurate information on the lateral displacement of the measured surface is essential. Since the uncertainty requirement for a respective displacement measurement is currently not known, Monte Carlo simulations of LSWLI measurements are carried out at first to assess the impact of the displacement uncertainty on the topography measurement. The simulation shows that the uncertainty of the displacement measurement has a larger influence on the total height uncertainty than the uncertainty of the displacing motion itself. Secondly, a sufficiently precise displacement measurement by means of digital speckle correlation (DSC) is proposed that is fully integrated into the field of view of the interferometer. In contrast to externally applied displacement measurement systems, the integrated combination of DSC with LSWLI needs no synchronization and calibration, and it is applicable for translatory as well as rotatory scans. To demonstrate the findings, an LSWLI setup with integrated DSC measurements is realized and tested on a rotating cylindrical object with a surface made of a linear encoder strip.
机译:横向扫描白光干涉测量法(LSWLI)是用于在移动表面上的高分辨率地形测量的有希望的技术。为了实现通常与白光干涉测量相关的分辨率,有关测量表面的横向位移的准确信息是必不可少的。由于目前未知各个位移测量的不确定性要求,首先进行LSWLI测量的蒙特卡罗模拟,以评估位移不确定性对地形测量的影响。仿真表明,位移测量的不确定性对总高度不确定性的影响比移位运动本身的不确定性具有更大的影响。其次,提出了一种通过数字斑点相关性(DSC)的充分精确的位移测量,其完全集成到干涉仪的视野中。与外部应用的位移测量系统相比,DSC的综合组合具有LSWLI不需要同步和校准,并且适用于平移以及旋转扫描。为了展示研究结果,实现了具有集成DSC测量的LSWLI设置并在旋转圆柱形物体上进行测试,该物体具有由线性编码器条制成的表面。

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