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Multiscale deformation measurements using multispectral optical metrology

机译:使用多光谱光学计量技术进行多尺度变形测量

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摘要

Remote measurements using images are particularly useful in structural health monitoring cases in which the installation of contact sensors is difficult. Some limitations, though, associated with photogrammetry-type optical metrology involve the application of speckle patterns, which become even more important with variable working distance or when the required resolution and sensitivity are not a priori known which are both very practical common issues. In this context, multispectral sensing can circumvent some of the challenges of acquiring data at different working distances. The objective of this investigation is therefore to use multispectral imaging combined with the method of digital image correlation to demonstrate an approach for remote sensing related to deformation measurements at the structural level. To demonstrate this novel approach, two speckle patterns were designed for measurements at specified working distances; one was set to work in the visible and the second in the ultraviolet spectrum. The results show that the spectral specific reflectivity of the speckle patterns can be used for spatial overlay without affecting imaging in either spectral range considered, which allows the extraction of multiscale deformation information.
机译:在难以安装接触式传感器的结构健康监测情况下,使用图像进行远程测量特别有用。但是,与摄影测量类型的光学计量相关的一些限制涉及散斑图案的应用,这些散斑图案对于可变的工作距离或在事先不知道所需的分辨率和灵敏度的情况下变得尤为重要,这都是非常实际的常见问题。在这种情况下,多光谱传感可以规避在不同工作距离下采集数据的一些挑战。因此,本研究的目的是将多光谱成像与数字图像相关方法结合使用,以展示一种与结构水平的变形测量​​相关的遥感方法。为了证明这种新颖的方法,设计了两种散斑图样,用于在指定的工作距离下进行测量。一个被设置为在可见光下工作,第二个被设置为在紫外线光谱下工作。结果表明,散斑图样的光谱比反射率可用于空间覆盖,而不会影响所考虑的任一光谱范围内的成像,从而可以提取多尺度变形信息。

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