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Construction Project Monitoring with Site Photographs and 4D Project Models

机译:使用现场照片和4D项目模型进行施工项目监控

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摘要

Early and accurate measurement of progress is crucial for the success of a project. Early detection of discrepancies and deviation from the as-planned data allow more time for project participants to identify the best solution. Monitoring the construction progress requires the Project Managers to analyze a lot of as-built data. This time-consuming process is prone to error. To overcome this problem, people have started adopting Building Information Models (BIM) for monitoring the construction progress. In this paper, we have discussed how the site photographs, which are readily available at all project sites, can be effectively used for monitoring the progress. The 4D as-planned model is prepared at the beginning of the project. Then, a 3D model is reconstructed from time-lapsed as-built photos. For any given time, the progress can be tracked by comparing the 4D model and the 3D as-built model. The progress data is extracted by superimposing the reconstructed scene over the 4D as-planned model. The reconstructed model allows the as-built photographs to be geo-registered by the 4D as-planned model. As a result of this comparison, the progress data is then visualized in an AR environment. Progress is visualized in the 4D model using a quadrangle visualization scheme. This type of approach presents a realistic understanding of the construction progress and is a very good communication tool between project participants. We have discussed both interior and exterior construction progress monitoring is this paper.
机译:尽早准确地测量进度对于项目的成功至关重要。尽早发现差异和偏离计划中的数据可以使项目参与者有更多时间来确定最佳解决方案。监视施工进度需要项目经理分析大量竣工数据。此耗时的过程容易出错。为了克服这个问题,人们已经开始采用建筑信息模型(BIM)来监视施工进度。在本文中,我们讨论了如何在所有项目站点上随时获得的站点照片可以有效地用于监视进度。在项目开始时准备了4D计划模型。然后,从延时的建成照片中重建3D模型。对于任何给定的时间,可以通过比较4D模型和3D竣工模型来跟踪进度。通过将重建的场景叠加在4D计划模型上来提取进度数据。重建的模型允许通过4D计划模型对竣工的照片进行地理配准。作为该比较的结果,然后在AR环境中可视化进度数据。使用四边形可视化方案在4D模型中可视化进度。这种方法代表了对施工进度的现实理解,并且是项目参与者之间非常好的交流工具。我们已经讨论了本文的内部和外部施工进度监控。

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  • 作者

    J. Skibniewski, Miroslaw;

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  • 年度 2014
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  • 原文格式 PDF
  • 正文语种 eng
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