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Automated Deviation Analysis for As-Built Status Assessment of Steel Assemblies and Pipe Spools

机译:自动偏差分析,用于评估钢组件和管轴的竣工状态

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Steel assemblies and pipe spools play an essential role in the industrial construction sector. Fabrication of steel assemblies has been a challenging task due to the limited fabrication precision of the tools used in the process and inadequate inspection during fabrication. Moreover, unfavorable deformations may occur during the transportation phase which makes the erection and installation phase more complicated. These deviations require further considerations for realignment and repair that are associated with rework on construction sites. Hence, a systematic and automatic framework is required to continuously monitor the fabrication and installation processes of steel assemblies. Current approaches lack a sufficient level of control and are prone to error. This paper presents an automated framework to detect defective parts in steel assemblies and pipe spools in particular. A laser-based point cloud, which represents the as-built status, is compared to the original state from the CAD drawings that exist in the Building Information Model (BIM). Therefore, the defective parts are detected in a timely manner. The comparison is distance based and the procedure is fully automated. The experiments conducted to validate the proposed approach show that the model has high precision and a high rate of recall and has the potential to be employed for automated damage detection in order to improve productivity on construction sites.
机译:钢制组件和线轴在工业建筑领域起着至关重要的作用。由于在此过程中使用的工具的制造精度有限,并且在制造过程中检查不足,因此,制造钢制组件一直是一项艰巨的任务。此外,在运输阶段可能发生不利的变形,这使安装和安装阶段更加复杂。这些偏差需要进一步考虑与施工现场返工有关的重新对准和维修。因此,需要一个系统的自动框架来连续监视钢组件的制造和安装过程。当前的方法缺乏足够的控制水平,并且容易出错。本文提出了一种自动化的框架,可以检测出钢装配体特别是线轴中的缺陷零件。代表建筑物状态的基于激光的点云与建筑物信息模型(BIM)中存在的CAD工程图中的原始状态进行了比较。因此,可以及时检测出有缺陷的部件。比较是基于距离的,并且该过程是完全自动化的。为验证所提出的方法而进行的实验表明,该模型具有较高的精度和较高的召回率,并且具有用于自动损坏检测以提高建筑工地生产率的潜力。

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