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Laser-based surface damage detection and quantification using predicted surface properties

机译:使用预测的表面特性进行基于激光的表面损伤检测和量化

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摘要

Damage due to age or accumulated effects from hazards on existing structures poses a worldwide problem. In order to evaluate the current status of aging, deteriorating and damaged structures, it is vital to accurately assess the present conditions. It is possible to capture the in situ condition of structures by using laser scanners that create dense three-dimensional point clouds. This paper investigates the use of high resolution three-dimensional terrestrial laser scans coupled with images to capture geometric range data of complex scenes for surface damage detection and quantification. Although using images with varying resolution to detect cracks is an extensively researched topic, damage detection using laser scanners with and without color images is a new research area that holds many opportunities for enhancing the current practice of visual inspections. Thus, this paper mainly focuses on combining the best features of laser scans and images to create an automatic and effective surface damage detection method, which will reduce the need for skilled labor during visual inspections and allow automatic documentation of related information. A novel surface normal-based damage detection and quantification method that uses the local surface properties extracted from laser scanner data along with color information is presented. Color data provides information in the fourth dimension that enables detecting damage types such as cracks, corrosion, and related surface defects that are generally difficult to identify using only laser scanner.
机译:由于年龄而造成的损坏或危害对现有结构的累积影响造成了全世界性的问题。为了评估结构的老化,恶化和损坏的当前状态,准确评估当前状况至关重要。通过使用产生密集的三维点云的激光扫描仪,可以捕获结构的原位状态。本文研究了高分辨率三维地面激光扫描与图像的结合使用,以捕获复杂场景的几何范围数据,以进行表面损伤检测和量化。尽管使用分辨率不同的图像检测裂纹是一个广泛研究的课题,但是使用带有或不带有彩色图像的激光扫描仪进行损坏检测是一个新的研究领域,它为增强目视检查的当前实践提供了许多机会。因此,本文主要集中于结合激光扫描和图像的最佳功能,以创建一种自动有效的表面损伤检测方法,这将减少视觉检查期间对熟练工人的需求,并允许自动记录相关信息。提出了一种新颖的基于表面法线的损伤检测和量化方法,该方法使用从激光扫描仪数据中提取的局部表面特性以及颜色信息。颜色数据提供了第四维信息,该信息可以检测通常仅使用激光扫描仪通常难以识别的损坏类型,例如裂缝,腐蚀和相关的表面缺陷。

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