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Skeleton-based discrepancy feedback for automated realignment of industrial assemblies

机译:基于骨架的差异反馈,用于工业装配的自动重新对准

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摘要

Automated and timely detection, characterization, and quantification of fabrication discrepancies and errors are fundamental problems in construction engineering. Despite the fact that the precision of manufacturing machines is continually improving, there are inevitable discrepancies between the designed and built assemblies because of construction realities. Such non-compliant assemblies should be detected early, and the required corrective actions should be planned accordingly. This paper presents an algorithm for automated quantification of discrepancies for components of assemblies. Rather than using dense point clouds, the geometric skeleton (wireframe) of assemblies is extracted for further manipulation, once the as-built status is captured using the appropriate method. The extracted skeletons, which abstractly represent the designed and built states, are registered using a constrained iterative closest point (ICP) algorithm. In order to identify the points making up each straight segment, the skeletons are clustered, and a straight line is fit to each resulting cluster. The corresponding segments in both states are then compared and investigated for quantifying the incurred discrepancy in the form of a rigid transformation. Experimental results show that the accuracy and speed of the new framework are superior to a previously developed method (3D sliding cube). (C) 2015 Elsevier B.V. All rights reserved.
机译:自动化和及时的检测,表征和量化制造差异和错误是建筑工程中的基本问题。尽管制造机器的精度在不断提高,但由于结构的现实,设计和建造的组件之间不可避免地存在差异。此类不合规的组件应及早发现,并应计划相应的纠正措施。本文提出了一种自动量化装配体零件差异的算法。一旦使用适当的方法捕获了竣工状态,就可以提取装配的几何骨架(线框)以进​​行进一步的操作,而不是使用密集的点云。使用约束的迭代最近点(ICP)算法注册提取的骨架,这些骨架抽象地表示设计状态和构建状态。为了识别组成每个直线段的点,对骨骼进行聚类,然后将一条直线拟合到每个生成的聚类上。然后比较和研究两种状态下的相应段,以量化刚性转换形式的差异。实验结果表明,新框架的准确性和速度优于以前开发的方法(3D滑动立方体)。 (C)2015 Elsevier B.V.保留所有权利。

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