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Accurate extraction of brick shapes in masonry walls from dense terrestrial laser scanning point cloud

机译:精确提取叠层墙壁砌体中的砖形状,来自茂密的陆地激光扫描点云

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Masonry structures commonly composed of a large amount of bricks or stones. Making an inventory of bricks in masonry walls is of great importance in the fields of building documentation, change detection and pattern recognition. This paper explores the problem of brick shape extraction for point cloud data with outliers as gathered by a laser scanner. For this purpose, we establish the basic brick shape model. Next, dimension reduction from 3D to 2D is done using principal component analysis (PCA). Traditionally, the bounding rectangle, as well as four vertices of the brick, are estimated by computing the maximum and minimum values of the coordinates of the brick points in 2D space. However, the existence of outliers in brick point cloud is common that may occur as random or systematic errors. If so, the brick shape extraction results are unreliable. To address this problem, we present a robust rectangle fitting algorithm for dense point cloud that uses PCA. Theoretically, the rectangle fitting model is established based on the geometry of the brick itself. We introduce the slack variable and critical rectangle to improve the antinoise capability. The accuracy and consistency of the proposed robust rectangle fitting is evaluated by analysing single brick. Afterward, the method implemented on two patches of a masonry wall and the performance is demonstrated. (C) 2019 Published by Elsevier Ltd.
机译:砌体结构通常由大量砖块或石头组成。在构建文档,改变检测和模式识别方面,在砌体墙壁上制作砖块库存非常重要。本文探讨了激光扫描仪收集的异常值点云数据的砖形提取问题。为此目的,我们建立了基本砖形模型。接下来,使用主成分分析(PCA)完成从3D到2D的尺寸减小。传统上,限制矩形以及砖的四个顶点通过计算2D空间中砖点的坐标的最大值和最小值来估计。但是,砖点云中的异常值是常见的,可能随机或系统错误发生。如果是这样,砖形提取结果是不可靠的。为了解决这个问题,我们为使用PCA的密集点云提出了一种强大的矩形拟合算法。从理论上讲,基于砖本身的几何形状建立矩形拟合模型。我们介绍了松弛变量和临界矩形,以提高抗拒功能。通过分析单砖来评估所提出的鲁棒矩形配件的准确性和一致性。之后,对两个贴片墙和性能的处理方式实施的方法。 (c)2019年由elestvier有限公司出版

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