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Random laser speckle pattern projection for non-contact vibration measurements using a single high-speed camera

机译:随机激光散斑图案投影,使用单个高速相机进行非接触式振动测量

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摘要

3D vision methods are a powerful tool for measuring full-field vibration patterns in the most varied types of surfaces. Digital Image Correlation is typically used to track noticeable features on the surface in order to measure local displacements on the tested system. In this work, a novel randomly structured light system based on laser speckle pattern projection and its calibration procedure are proposed for applying computer vision methods to the measurement of vibration in featureless or reflective objects without modifying them. A simple projector is used based on a laser beam affected by a diffuser element. A stereo-vision set-up with at least one high-speed camera is used to record video sequences from which the initial shape and evolution of the sample displacement are obtained. The vibration mode behavior of different steel plates are obtained using this full-field vibration measuring technique. The pros and cons of the proposed method are discussed and compared to similar stereovision set-ups.
机译:3D Vision方法是一种强大的工具,用于测量最多种曲面中的全场振动模式。数字图像相关通常用于跟踪表面上的显着特征,以便测量测试系统上的局部位移。在这项工作中,提出了一种基于激光散斑图案投影的新型随机结构化光系统及其校准程序,用于将计算机视觉方法应用于无特征或反射物体中的振动的测量而不修改它们。基于受扩散元件影响的激光束使用简单的投影仪。使用至少一个高速相机的立体视觉设置用于记录获得样品位移的初始形状和演化的视频序列。使用这种全场振动测量技术获得不同钢板的振动模式行为。讨论了所提出的方法的优缺点与类似的立体化设置相比。

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