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首页> 外文期刊>Journal of Computing in Civil Engineering >3D Reconstruction and Measurement of Surface Defects in Prefabricated Elements Using Point Clouds
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3D Reconstruction and Measurement of Surface Defects in Prefabricated Elements Using Point Clouds

机译:用点云重建预制元件表面缺陷的重建与测量

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摘要

Abstract Due to a higher efficiency and lower cost, prefabricated construction is gradually gaining acceptance within the market. Laser scanning has already been adopted in civil engineering to reconstruct a three-dimensional (3D) model of a structure, to monitor the deformation, and so on. This paper seeks to explore a more automated and accurate quality control process, focusing on the surface defects in prefabricated elements. Laser scanning is adopted for data collection and the 3D reconstruction of the prefabricated components. Besides, a new point cloud preprocessing, involving the K-nearest neighbors (KNN) algorithm, a reduction of the data dimension, and data gridding, is developed to improve the efficiency and accuracy of subsequent algorithms. The Delaunay triangle is used to extract the contour of the point cloud, and then the contour is fitted to further determine the geometric data. Meanwhile, a comprehensive quality control system of prefabricated components based on relevant specifications is proposed, and the quality of prefabricated components is monitored intuitively by the values of indicators. In order to integrate it into the building information modeling (BIM) platform and better store the obtained quality information, the production quality information is designed to be extended to the Industry Foundation Classes (IFC) standard. The proposed approach will be applied to analyze the causes of quality problems in the production process and strengthen the quality control. This study designs a more efficient and accurate quality evaluation process, including data collection, data processing, indicator calculation, and quality evaluation. Moreover, the results moving forward can provide feedback to the cause of the quality issues and further improve the production quality of prefabricated elements.
机译:摘要由于效率较高,成本较低,预制结构逐步在市场内获得接受。在土木工程中已经采用了激光扫描来重建一个结构的三维(3D)模型,以监测变形,等等。本文探讨了更加自动化和准确的质量控制过程,专注于预制元件中的表面缺陷。采用激光扫描来用于预制组件的数据收集和3D重建。此外,开发了一种涉及K-CORMATION邻居(KNN)算法的新点云预处理,涉及数据维度和数据网格的减少,以提高后续算法的效率和准确性。 Delaunay三角形用于提取点云的轮廓,然后安装轮廓以进一步确定几何数据。同时,提出了一种基于相关规范的预制组件的综合质量控制系统,并通过指标的值直观地监测预制组件的质量。为了将其集成到建筑信息建模(BIM)平台上并更好地存储所获得的质量信息,设计质量信息旨在扩展到行业基础类(IFC)标准。拟议的方法将适用于分析生产过程中质量问题的原因,并加强质量控制。本研究设计了更有效和准确的质量评估过程,包括数据收集,数据处理,指标计算和质量评估。此外,前进的结果可以向质量问题的原因提供反馈,进一步提高预制元件的生产质量。

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