Investigation of the UAV Capability for Measuring Building's Cracks Dimensions

F. Abdulrahman, S. Adam
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Abstract

This research uses Unmanned Aerial vehicles (UAVs) as a platform to examine and monitor a building. It concentrates on inspecting building flaws, particularly cracks, utilizing UAV photogrammetry, which is the focus of this study. The reason for using a building as an object in this work is that the building maintenance team can evaluate, which can support providing trustworthy crack information on buildings. The building chosen for this work contains a reasonable amount of cracks, making it suitable. The methodology and procedures are used to take images of cracks in the building. The software can determine the size of the cracks based on 518 photos taken with a UAV. The 3D model of the building is created by using Agisoft Photoscan software to receive an overview of the building dimensions. The measurement of cracks is also being processed using Photomodeler software. The results showed that the capability of the UAV imagery can aid present surveying operations, particularly on building maintenance. It also indicates that cracks appeared on buildings from 0.72cm to 3.24cm in a certain altitude. The Root Mean Square (RMS) error obtained from comparing the actual and measured value of cracks was ±0.70 cm with the help of 114 GCPs distributed all over the building.
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无人机测量建筑物裂缝尺寸的能力调查
本研究使用无人飞行器(UAV)作为检查和监测建筑物的平台。本研究的重点是利用无人飞行器摄影测量技术检查建筑物的缺陷,尤其是裂缝。在这项工作中使用建筑物作为对象的原因是,建筑物维护团队可以进行评估,从而为提供可信的建筑物裂缝信息提供支持。本研究选择的建筑物包含合理数量的裂缝,因此非常适合。该方法和程序用于拍摄建筑物裂缝的图像。软件可根据无人机拍摄的 518 张照片确定裂缝的大小。使用 Agisoft Photoscan 软件可创建建筑物的三维模型,从而获得建筑物的整体尺寸。裂缝的测量也使用 Photomodeler 软件进行处理。结果表明,无人机图像的能力可以帮助目前的测量工作,尤其是建筑维护方面。它还表明,在一定高度范围内,建筑物上出现的裂缝从 0.72 厘米到 3.24 厘米不等。在分布于建筑物各处的 114 个 GCP 的帮助下,通过比较裂缝的实际值和测量值得出的均方根误差为 ±0.70 厘米。
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