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从摄影测量方法的角度来看,iPad LiDAR 生成的建筑物体表面模型的精度验证。

Accuracy Verification of Surface Models of Architectural Objects from the iPad LiDAR in the Context of Photogrammetry Methods.

机构信息

Faculty of Computer Science and Telecommunications, Cracow University of Technology, Warszawska 24, 31-155 Kraków, Poland.

Faculty of Architecture, Cracow University of Technology, Warszawska 24, 31-155 Kraków, Poland.

出版信息

Sensors (Basel). 2022 Nov 4;22(21):8504. doi: 10.3390/s22218504.

Abstract

The creation of accurate three-dimensional models has been radically simplified in recent years by developing photogrammetric methods. However, the photogrammetric procedure requires complex data processing and does not provide an immediate 3D model, so its use during field (in situ) surveys is infeasible. This paper presents the mapping of fragments of built structures at different scales (finest detail, garden sculpture, architectural interior, building facade) by using a LiDAR sensor from the Apple iPad Pro mobile device. The resulting iPad LiDAR and photogrammetric models were compared with reference models derived from laser scanning and point measurements. For small objects with complex geometries acquired by iPad LiDAR, up to 50% of points were unaligned with the reference models, which is much more than for photogrammetric models. This was primarily due to much less frequent sampling and, consequently, a sparser grid. This simplification of object surfaces is highly beneficial in the case of walls and building facades as it smooths out their surfaces. The application potential of the IPad LiDAR Pro is severely constrained by its range cap being 5 m, which greatly limits the size of objects that can be recorded, and excludes most buildings.

摘要

近年来,通过开发摄影测量方法,准确的三维模型的创建已经大大简化。然而,摄影测量程序需要复杂的数据处理,并且不能提供即时的 3D 模型,因此在现场(原地)调查中使用是不可行的。本文介绍了使用 Apple iPad Pro 移动设备上的 LiDAR 传感器对不同比例(最精细的细节、园林雕塑、建筑内部、建筑立面)的建筑结构碎片进行映射。将生成的 iPad LiDAR 和摄影测量模型与源自激光扫描和点测量的参考模型进行了比较。对于 iPad LiDAR 采集的具有复杂几何形状的小物体,多达 50%的点与参考模型未对齐,这比摄影测量模型多得多。这主要是由于采样频率低得多,因此网格稀疏。对于墙壁和建筑立面等物体表面,这种简化非常有益,因为它可以使它们的表面更加光滑。IPad LiDAR Pro 的应用潜力受到其 5 米范围限制的严重限制,这极大地限制了可以记录的物体的大小,并排除了大多数建筑物。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/92b5/9657006/c01e26e427c0/sensors-22-08504-g001.jpg

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