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Planning for scanning using building information model: a novel approach with occlusion handling

机译:使用建筑物信息模型进行扫描计划:一种具有遮挡处理的新颖方法

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摘要

Terrestrial laser scanning is finding an increasing range of applications in the Architectural Engineering Construction and Facilities Management (AEC/FM) industry. While significant progress has been made in the performance of laser scanners and multi-scan registration, planning for scanning – i.e. the selection of locations for the scanner and registration targets – still done quite subjectively by surveyors and is underpinned by little or very basic scientific reasoning. This may lead 3D point cloud data being incomplete or insufficiently accurate to deliver the completeness and accuracyin the subsequent measurement or modelling tasks.In this paper, preliminary results are presented for a novel scientific approach for planning for scanning in the construction sector. The approach is designed to generate automatic laser scanning plans using as input: (1) the facility’s 3D BIM model; (2) the scanner’s characteristics; and (3) the scanning specifications in terms of individual point precision and surface area covered by the scanned data for each 3D BIM model object. The output is the smallest set of scanner locations required to achieve those requirements. The particular value of the proposed approach is its capacity to take model self-occlusions into account. The performance of this approach is assessed with a simple experiment simulating the scanning of a concrete structure.
机译:地面激光扫描在建筑工程施工和设施管理(AEC / FM)行业中发现了越来越多的应用范围。尽管在激光扫描仪和多扫描配准的性能方面已经取得了重大进展,但是扫描计划(即选择扫描仪和配准目标的位置)仍然由测量师主观地完成,并且很少或非常基础的科学推理为基础。这可能会导致3D点云数据不完整或不够准确,从而无法在后续的测量或建模任务中提供完整性和准确性。本文介绍了一种新颖的科学方法,用于规划建筑领域的扫描,提供了初步结果。该方法旨在使用以下输入作为输入来生成自动激光扫描计划:(1)设施的3D BIM模型; (2)扫描仪的特征; (3)针对每个3D BIM模型对象的扫描规格,包括各个点的精度和所扫描数据所覆盖的表面积。输出是达到这些要求所需的最小扫描仪位置集合。所提出的方法的特殊价值在于其考虑模型自闭塞的能力。通过模拟混凝土结构扫描的简单实验评估了该方法的性能。

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