3D Reconstruction of Interior Wall Surfaces under Occlusion and Clutter

A. Adán, Daniel F. Huber
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引用次数: 173

Abstract

Laser scanners are often used to create 3D models of buildings for civil engineering applications. The current manual process is time-consuming and error-prone. This paper presents a method for using laser scanner data to model predominantly planar surfaces, such as walls, floors, and ceilings, despite the presence of significant amounts of clutter and occlusion, which occur frequently in natural indoor environments. Our goal is to recover the surface shape, detect and model any openings, and fill in the occluded regions. Our method identifies candidate surfaces for modeling, labels occluded surface regions, detects openings in each surface using supervised learning, and reconstructs the surface in the occluded regions. We evaluate the method on a large, highly cluttered data set of a building consisting of forty separate rooms.
遮挡和杂波条件下内墙表面的三维重建
激光扫描仪通常用于创建土木工程应用的建筑物3D模型。当前的手工流程耗时且容易出错。本文提出了一种使用激光扫描仪数据来模拟主要平面的方法,如墙壁、地板和天花板,尽管存在大量的杂波和遮挡,这在自然室内环境中经常发生。我们的目标是恢复表面形状,检测和建模任何开口,并填充被遮挡的区域。我们的方法识别用于建模的候选表面,标记遮挡的表面区域,使用监督学习检测每个表面中的开口,并在遮挡区域中重建表面。我们在一个由40个独立房间组成的建筑物的大型,高度杂乱的数据集上评估该方法。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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