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首页> 外文期刊>Proceedings of the Society for Experimental Mechanics >Fast, Robust and Accurate Digital Image Correlation Calculation Without Redundant Computations
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Fast, Robust and Accurate Digital Image Correlation Calculation Without Redundant Computations

机译:快速、健壮和准确的数字图像没有多余的相关计算计算

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High-efficiency and high-accuracy deformation analysis using digital image correlation (DIC) has become increasingly important in recent years, considering the ongoing trend of using higher resolution digital cameras and common requirement of processing a large sequence of images recorded in a dynamic testing. In this work, to eliminate the redundant computations involved in conventional DIC method using forward additive matching strategy and classic Newton-Raphson (FA-NR) algorithm without sacrificing its sub-pixel registration accuracy, we proposed an equivalent but more efficient DIC method by combining inverse compositional matching strategy and Gauss-Newton (IC-GN) algorithm for fast, robust and accurate full-field displacement measurement. To this purpose, first, an efficient IC-GN algorithm, without the need of re-evaluating and inverting Hessian matrix in each iteration, is introduced to optimize the robust zero-mean normalized sum of squared difference (ZNSSD) criterion to determine the desired deformation parameters of each interrogated subset. Then, an improved reliability-guided displacement tracking strategy is employed to achieve further speed advantage by automatically providing accurate and complete initial guess of deformation for the IC-GN algorithm implemented on each calculation point. Finally, an easy-to-implement interpolation coefficient look-up table approach is employed to avoid the repeated calculation of bicubic interpolation at subpixel locations. With the above improvements, redundant calculations involved in various procedures (i.e. initial guess of deformation, sub-pixel displacement registration and sub-pixel intensity interpolation) of conventional DIC method are entirely eliminated. The registration accuracy and computational efficiency of the proposed DIC method are carefully tested using numerical experiments and real experimental images. Experimental results verify that the proposed DIC method using IC-GN algorithm and the existing DIC method using classic FA-NR algorithm generate similar results, but the former is about three to five times faster. The proposed reliability-guided IC-GN algorithm is expected to be a new standard full-field displacement tracking algorithm in DIC.
机译:高效、高精度变形分析使用数字图像相关(DIC)在最近变得越来越重要年,考虑到使用的持续的趋势高分辨率数码相机和常见要求的处理大量的序列图片记录在一个动态测试。工作,消除冗余计算参与常规DIC方法使用添加剂匹配策略和经典牛顿(FA-NR)算法亚牺牲自己登记的准确性,我们提出了一个更加有效的替代品DIC方法通过结合逆成分匹配策略和高斯牛顿(IC-GN)算法快速、健壮的和准确的细致的位移测量。的目的,首先,一个高效IC-GN算法,不需要重新评估和反相海赛矩阵在每个迭代中,介绍了优化的零均值归一化的平方(ZNSSD)标准的差异确定所需的变形参数每个审问子集。reliability-guided位移跟踪策略是用来实现进一步的速度优势自动提供准确、完整的初始猜测IC-GN变形在每一个计算点算法实现。最后,一个易于实现插值系数采用查表的方法避免重复计算双三次的插值的亚像素位置。以上改进,冗余计算参与各种手续(即初始猜的变形、亚像素位移注册和亚像素强度插值)传统DIC的方法完全消除。并提出了DIC的计算效率使用数值方法仔细测试实验和实际实验图像。实验结果验证该DIC方法使用IC-GN算法和现有的DIC使用经典FA-NR算法生成方法类似的结果,但前者讲的是三个五倍。预计reliability-guided IC-GN算法是一个新的标准细致的位移在DIC跟踪算法。

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