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GENERATION AND COMPARISON OF TLS AND SFM BASED 3D MODELS OF SOLID SHAPES IN HYDROMECHANIC RESEARCH

机译:基于TLS和基于SFM的SOLICHICS研究3D模型的生成与比较

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The aim of a current study at the Institute of Hydraulic Engineering and Technical Hydromechanics at TU Dresden is to develop a new injection method for quick and economic sealing of dikes or dike bodies, based on a new synthetic material. To validate the technique, an artificial part of a sand dike was built in an experimental hall. The synthetic material was injected, which afterwards spreads in the inside of the dike. After the material was fully solidified, the surrounding sand was removed with an excavator. In this paper, two methods, which applied terrestrial laser scanning (TLS) and structure from motion (SfM) respectively, for the acquisition of a 3D point cloud of the remaining shapes are described and compared. Combining with advanced software packages, a triangulated 3D model was generated and subsequently the volume of vertical sections of the shape were calculated. As the calculation of the volume revealed differences between the TLS and the SfM 3D model, a thorough qualitative comparison of the two models will be presented as well as a detailed accuracy assessment. The main influence of the accuracy is caused by generalisation in case of gaps due to occlusions in the 3D point cloud. Therefore, improvements for the data acquisition with TLS and SfM for such kind of objects are suggested in the paper.
机译:Tu Dresden在液压工程技术研究所和技术水力学研究所的目的的目的是基于新的合成材料,开发一种新的注射方法,用于堤防或堤防体的快速和经济密封。为了验证技术,在一个实验厅内建造了一个沙滩的人造部分。注射了合成材料,然后在堤防内部蔓延。在物质完全凝固后,用挖掘机除去周围的砂。在本文中,描述并分别从运动(SFM)中应用地面激光扫描(TLS)和结构的两种方法,用于获取剩余形状的3D点云。结合高级软件包,生成三角化3D模型,随后计算形状的垂直部分的体积。随着体积的计算揭示了TLS和SFM 3D模型之间的差异,将呈现两种模型的彻底定性比较以及详细的精度评估。精度的主要影响是由于在3D点云中的闭塞而差距的概括引起的。因此,在论文中提出了用TLS和SFM进行数据采集的改进。

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