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RBF-BASED LASER SPECKLE PATTERN DIGITAL IMAGE CORRELATION METHOD FOR SURFACE STRAIN MEASUREMENTS

机译:基于RBF的激光散斑图案用于表面应变测量的数字图像相关方法

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This paper introduces an innovative technique that integrates a genetic algorithm based digital image correlation with laser speckle photography (LSP) for the measurement of surface displacements in structures. The images (before and after deformation) are digitized using a digital camera, and the grayscale intensity matrices are read and processed by Matlab image processing toolbox. The two matrices of the images are then inputted into an iterative program based on the genetic algorithm that utilizes an advanced cross correlation technique to determine the surface displacements. Additionally, the strains are computed by radial basis function (RBF) differentiation. The computed displacements are compared with simulated results obtained by finite element analysis. Close agreement between the two results proved the validity of the developed non-contact technique for accurately measuring surface displacements. The experimentally measured displacements can be directly used in an inverse technique to detect and characterize subsurface cavities in structures.
机译:本文介绍了一种创新技术,其与激光散斑摄影(LSP)集成了基于遗传算法的数字图像相关性,用于测量结构中的表面位移。图像(在变形之前和之后)使用数码相机进行数字化,并且由Matlab图像处理工具箱读取和处理灰度强度矩阵。然后基于利用先进的交叉相关技术来确定地面位移的遗传算法,将图像的两个矩阵输入到迭代程序中。另外,菌株通过径向基函数(RBF)分化来计算。将计算的位移与通过有限元分析获得的模拟结果进行比较。两种结果之间的密切一致性证明了开发的非接触技术的有效性,用于精确测量表面位移。实验测量的位移可以以逆技术直接用于检测和表征结构中的地下腔。

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