Enhancing with deconvolution the metrological performance of the grid method for in-plane strain measurement

F. Sur, M. Grédiac
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引用次数: 4

Abstract

This article is motivated by a problem from experimental solid mechanics. The grid method permits to estimate in-plane displacement and strain components in a deformed material. A regular grid is deposited on the surface of the material, and images are taken before and after deformation. Windowed Fourier analysis then gives an estimate of the surface displacement and strain components. We show that the estimates obtained by this technique are approximately the convolution of the actual values with the analysis window. We also characterize how the noise in the grid image impairs the displacement and strain maps. Finally, the metrological performance of the grid method is enhanced with deconvolution algorithms. This work is potentially of interest in optical interferometry, since grids are particular fringe patterns.
通过反褶积增强网格法在平面应变测量中的计量性能
这篇文章是由固体力学实验中的一个问题引起的。网格法可以估计变形材料的面内位移和应变分量。在材料表面沉积一个规则的网格,并拍摄变形前后的图像。窗口傅里叶分析然后给出了表面位移和应变分量的估计。我们表明,通过这种技术获得的估计值近似于实际值与分析窗口的卷积。我们还描述了网格图像中的噪声如何损害位移和应变图。最后,利用反褶积算法增强网格法的计量性能。由于网格是一种特殊的条纹图案,因此这项工作在光学干涉测量中具有潜在的价值。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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