3D Full-Field Deformation Measuring Technique with Optics-Based Measurements

O. P. C. Randil, H. Mallikarachchi
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引用次数: 1

Abstract

Full-field deformation measurements plays a vital role in designing, monitoring and retrofitting many engineering products ranging from civil engineering structure to aerospace applications. Optics-based measurements have gained a vast popularity over last two decades. This paper attempts to establish a method in measuring displacements in a 3D environment, using optics-based measurements, in a cost-effective manner. The study focuses on measuring displacements of a moving object with two stationary cameras. Images acquired from two cameras are processed through MATLAB software package and selected region of the object is reconstructed in a virtual 3D environment at each step. Digital image correlation technique is then adopted to measure displacement by comparing the coordinates of reconstructed objects in each step. It is shown that the displacements can be measured to an accuracy of 0.15 mm (in 20 mm) for the selected object giving an accuracy of 98%.
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基于光学测量的三维全场变形测量技术
从土木工程结构到航空航天应用,现场变形测量在许多工程产品的设计、监测和改造中起着至关重要的作用。在过去的二十年里,基于光学的测量得到了广泛的普及。本文试图建立一种在三维环境中测量位移的方法,使用基于光学的测量,以一种具有成本效益的方式。这项研究的重点是用两台固定摄像机测量运动物体的位移。通过MATLAB软件包对两台相机采集的图像进行处理,每一步在虚拟三维环境中重建选定的目标区域。然后采用数字图像相关技术,通过比较每一步重建目标的坐标来测量位移。结果表明,所选物体的位移测量精度为0.15 mm(在20 mm内),精度为98%。
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