TLS点云作为多负载三维模型的数据源

P. Klapa
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引用次数: 2

摘要

科学技术的发展对工程的各个分支都产生了强烈的影响,包括大地测量学以及获取和处理测量数据的可能性。最好的例子是地面激光扫描,它可以以数百万点云的形式进行测量。云,代表地点和物体,成为一个空间数据库。当前工程中的问题不再是数据的获取和处理,而是信息的过剩和冗余。这个问题的解决方案是优化,即减少数据量的过程。它应该以这样一种方式实现其假设,即在不丢失对象所呈现的信息的情况下删除或减少不必要的信息。这个问题在使用点云在不同层次的细节3D建模的过程中尤为重要。LOD0-LOD4模型的适当级别需要不同类型的数据:一方面保证在研究中获得合适的精度等级,另一方面,数据源中不应包含过多的研究不必要的详细信息,这会使工作变得更加困难,并且由于需要对大量冗余信息进行操作而减慢工作速度。本文的目的是确定优化点云的工作范围,以便根据各个lod的需要调整其数量和质量。工作的结果允许确定数据统一的范围,为各自的精度组的三维模型生成。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
TLS point cloud as a data source for multi-lod of 3D models
The development of science and technology had a strong impact on all branches of engineering, including geodesy and the possibility of acquiring and processing measurement data. The best example of this is the Terrestrial Laser Scanning, whih can perform measurements in the form of a multi-million-point cloud. The cloud, representing places and objects, becomes a spatial database. The current problem in engineering is no longer data acquisition and processing, but information excess and redundancy. The solution to this problem is optimisation, which is the process of reducing the amount of data. It should implement its assumptions in such a way as to remove or reduce unnecessary information without losing the information presented by an ob- ject. This issue is particularly important in the process of using point clouds in 3D modelling at various levels of detail. The appropriate levels of the LOD0–LOD4 model require a different type of data: on the one hand ensuring the obtainment of the appropriate accuracy class in the study, and on the other hand, the data source should not contain too detailed information that is unnecessary for the study, which makes the work harder and slows it down due to the need to operate on a huge amount of redundant information Therefore, the purpose of this paper is to determine the scope of work on the optimisation of the point cloud in order to adjust its number and quality to the needs of individual LODs. The results of the work allowed to determine the scope of data unification for the respective precision groups of 3D models generating.
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