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Systematic errors in small deformations measured by use of shadow-moire topography

机译:利用阴影网纹地形测量的小变形中的系统误差

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摘要

Phase-shift shadow-moire topography is a noncontact optical technique for measuring the shapes of surfaces. Artifactual bands resembling isoheight surface contours are observed during measurement of small changes in shape by use of this technique. The shape-reconstruction algorithm used in shadowmoire topography is based on a mathematical model of the fringe patterns generated on the surface to be measured. We hypothesize that the observed bands reflect systematic errors caused by ignoring height-dependent terms in the mathematical model of the fringe patterns. We test the assumption by simulating the fringe patterns for a virtual test surface by using a model that contains height-dependent terms and one term that is idealized by ignoring these terms. Small systematic errors in shape are observed only when the surface is reconstructed from fringe patterns simulated with a model containing the height-dependent terms. Shape-error curves are computed as a function of the surface height by the subtraction of the reconstructed shape from the known shape. Simulated shape-error curves agree with experimental measurements in that they show an increase in error with surface height, and both the experimental and the simulated shape-error curves contain ripples. Although the errors are small in comparison with the dimensions of the surface and are negligible in shape measurements and in most deformation measurements, they may show up as noticeable bands in images of small deformations.
机译:相移阴影云纹形貌是一种用于测量表面形状的非接触式光学技术。通过使用此技术,在测量微小的形状变化时会观察到类似等高表面轮廓的伪像带。阴影纹地形中使用的形状重建算法基于要测量的表面上生成的条纹图案的数学模型。我们假设观察到的谱带反映了由于忽略条纹图案数学模型中依赖于高度的项而引起的系统误差。我们通过使用包含高度相关项和一个通过忽略这些项而理想化的项的模型来模拟虚拟测试表面的条纹图案来测试假设。仅当从使用包含高度相关项的模型模拟的条纹图案重建表面时,才能观察到形状上的小系统误差。通过从已知形状中减去重构形状,可以计算出形状误差曲线作为表面高度的函数。模拟的形状误差曲线与实验测量结果一致,因为它们显示出随着表面高度的误差增加,并且实验和模拟的形状误差曲线都包含波纹。尽管与表面尺寸相比,误差很小,并且在形状测量和大多数变形测量中可以忽略不计,但在较小变形的图像中,误差可能会显示为明显的条带。

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