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Automated continuous construction progress monitoring using multiple workplace real time 3D scans

机译:使用多个工作场所实时3D扫描自动进行连续施工进度监控

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In recent years, exponential growth has been detected in research efforts focused on automated construction progress monitoring. Despite various data acquisition methods and approaches, the success is limited. This paper proposes a new method, where changes are constantly perceived and as-built model continuously updated during the construction process, instead of periodical scanning of the whole building under construction. It turned out that low precision 3D scanning devices, which are closely observing active workplaces, are sufficient for correct identification of the built elements. Such scanning devices are small enough to fit onto workers’ protective helmets and on the applied machinery. In this way, workers capture all workplaces inside and outside of the building in real time and record partial point clouds, their locations, and time stamps. The partial point clouds are then registered and merged into a complete 4D as-built point cloud of a building under construction. Identification of as-designed BIM elements within the 4D as-built point cloud then results in the 4D as-built BIM. Finally, the comparison of the 4D as-built BIM and the 4D as-designed BIM enables identification of the differences between both models and thus the deviations from the time schedule. The differences are reported in virtual real-time, which enables more efficient project management.
机译:近年来,在专注于自动化施工进度监控的研究工作中发现了指数级增长。尽管有各种数据采集方法和方法,但是成功是有限的。本文提出了一种新方法,该方法在施工过程中不断感知变化并不断更新竣工模型,而不是定期扫描正在施工的整个建筑物。事实证明,密切观察活跃工作场所的低精度3D扫描设备足以正确识别所构建的元素。这样的扫描设备足够小,可以安装在工人的防护头盔和应用的机械上。这样,工作人员可以实时捕获建筑物内外的所有工作场所,并记录部分点云,它们的位置和时间戳。然后将部分点云注册并合并到正在建设中的建筑物的完整4D竣工点云中。然后,在4D竣工点云中识别已设计的BIM元素,即可生成4D竣工的BIM。最后,通过比较4D竣工的BIM和4D设计的BIM,可以识别两个模型之间的差异,从而确定与时间表的偏差。差异以虚拟实时报告,从而可以更有效地进行项目管理。

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