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Application of PDE Methods for Image-based Concrete Surface Damage Detection

机译:PDE方法在基于图像的混凝土表面损伤检测中的应用

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Tremendous progress has been achieved in image analysis and processing, and in particular, the use of partial differential equation (PDE) methods in image analysis has proliferated in recent years. However, PDE methods have seen little application to optical image-based structural damage detection for civil systems. This paper applies the Chan-Vese active contour model and its level set representation to detect concrete surface damage, in this case concrete cracks, in optical images. The detected cracks can be further characterized by extracted geometric quantities including their width, length and area of coverage, and associated with engineering design. With regard to crack width extraction, an approximate method is proposed, which relies on solving for a signed distance function. We test these methods by using synthetic images as well as real multi-temporal images from a laboratory experiment. This paper illustrates that using the proposed methods, cracks with complex topographical patterns can be successfully detected with sufficient accuracy.
机译:在图像分析和处理方面已经取得了巨大的进步,特别是近年来,偏微分方程(PDE)方法在图像分析中的使用激增了。但是,PDE方法几乎没有应用于民用系统中基于光学图像的结构损伤检测。本文应用Chan-Vese活动轮廓模型及其水平集表示法来检测光学图像中的混凝土表面损伤,在这种情况下为混凝土裂缝。可以通过提取的几何量进一步表征检测到的裂缝,包括其宽度,长度和覆盖面积,并与工程设计相关联。关于裂纹宽度提取,提出了一种近似方法,该方法依赖于求解有符号距离函数。我们通过使用合成图像以及来自实验室实验的真实多时间图像来测试这些方法。本文说明,使用所提出的方法,可以成功地以足够的精度成功地检测出具有复杂地形图案的裂缝。

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