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Analysis of Uncertainty in a Middle-Cost Device for 3D Measurements in BIM Perspective

机译:从BIM角度分析用于3D测量的中等成本设备的不确定性

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摘要

Medium-cost devices equipped with sensors are being developed to get 3D measurements. Some allow for generating geometric models and point clouds. Nevertheless, the accuracy of these measurements should be evaluated, taking into account the requirements of the Building Information Model (BIM). This paper analyzes the uncertainty in outdoor/indoor three-dimensional coordinate measures and point clouds (using Spherical Accuracy Standard (SAS) methods) for Eyes Map, a medium-cost tablet manufactured by e-Capture Research & Development Company, Mérida, Spain. To achieve it, in outdoor tests, by means of this device, the coordinates of targets were measured from 1 to 6 m and cloud points were obtained. Subsequently, these were compared to the coordinates of the same targets measured by a Total Station. The Euclidean average distance error was 0.005–0.027 m for measurements by Photogrammetry and 0.013–0.021 m for the point clouds. All of them satisfy the tolerance for point cloud acquisition (0.051 m) according to the BIM Guide for 3D Imaging (General Services Administration); similar results are obtained in the indoor tests, with values of 0.022 m. In this paper, we establish the optimal distances for the observations in both, Photogrammetry and 3D Photomodeling modes (outdoor) and point out some working conditions to avoid in indoor environments. Finally, the authors discuss some recommendations for improving the performance and working methods of the device.
机译:正在开发配备传感器的中型设备,以进行3D测量。有些允许生成几何模型和点云。但是,应考虑建筑物信息模型(BIM)的要求,评估这些测量的准确性。本文分析了由西班牙梅里达市e-Capture研究与发展公司生产的中等成本平板电脑Eyes Map的室外/室内三维坐标测量和点云(使用球面精度标准(SAS)方法)的不确定性。为此,在室外测试中,使用此设备可在1至6 m的范围内测量目标的坐标并获得浊点。随后,将它们与全站仪测量的相同目标的坐标进行比较。欧几里得的平均距离误差通过摄影测量法为0.005-0.027 m,对于点云为0.013-0.021 m。根据BIM 3D成像指南(总务管理局),所有这些都满足点云采集的公差(0.051 m);在室内测试中获得了类似的结果,值为0.022 m。在本文中,我们为摄影测量和3D摄影建模模式(室外)建立了观测的最佳距离,并指出了在室内环境下应避免的一些工作条件。最后,作者讨论了一些有关改善设备性能和工作方法的建议。

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