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An Improved Shearography Technique for Dynamic Deformation Measurement

机译:一种用于动态变形测量的改进剪切技术

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Dynamic deformation measurement is a hot topic in optical interferometry research. Currently, most proposed solutions in this field cannot simultaneously meet the fundamental requirements of accuracy and robustness, because these methods assume that the speckle field is constant during deformation or utilize iteration algorithm that generates a great deal of computation. In this paper, an improved shearography technique is presented. The fringe pattern is generated by the product of the speckle images preprocessed by frequency filter, and then the phase related to the deformation can be extracted from fringe pattern. Since only one image in deformed stage is used, the proposed method can be well applied for dynamic deformation measurement. Moreover, the proposed method has much more immunity to the fluctuation of speckle field compared with conventional method.
机译:动态变形测量是光学干涉测量研究的热点。当前,该领域中大多数提出的解决方案不能同时满足准确性和鲁棒性的基本要求,因为这些方法假定散斑场在变形期间是恒定的,或者利用产生大量计算的迭代算法。在本文中,提出了一种改进的剪切成像技术。条纹图案是由经过频率滤波器预处理的斑点图像的乘积生成的,然后可以从条纹图案中提取与变形有关的相位。由于仅使用一个变形阶段的图像,因此该方法可以很好地应用于动态变形测量。而且,与传统方法相比,该方法对斑点场的波动具有更大的抵抗力。

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