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Fusion of Terrestrial and Airborne Laser Data for 3D modeling Applications.

机译:用于3D建模应用的地面和机载激光数据融合。

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摘要

This thesis deals with the 3D modeling phase of the as-built large BIM projects. Among several means of BIM data capturing, such as photogrammetric or range tools, laser scanners have been one of the most efficient and practical tool for a long time. They can generate point clouds with high resolution for 3D models that meet nowadays' market demands. The current 3D modeling projects of as-built BIMs are mainly focused on using one type of laser scanner data, such as Airborne or Terrestrial. According to the literatures, no significant (few) efforts were made towards the fusion of heterogeneous laser scanner data despite its importance. The importance of the fusion of heterogeneous data arises from the fact that no single type of laser data can provide all the information about BIM, especially for large BIM projects that are existing on a large area, such as university buildings, or Heritage places. Terrestrial laser scanners are able to map facades of buildings and other terrestrial objects. However, they lack the ability to map roofs or higher parts in the BIM project. Airborne laser scanner on the other hand, can map roofs of the buildings efficiently and can map only small part of the facades.;In this thesis the long range laser scanner data obtained in the Stop-and-Go mapping mode, the short range laser scanner data, obtained in a fully static mapping mode, and the airborne laser data are all fused together to bring a complete effective solution for a large BIM project.;Working towards the 3D modeling of BIM projects, the thesis framework starts with the registration of the data, where a new fast automatic registration algorithm were developed. The next step is to recognize the different objects in the BIM project (classification), and obtain 3D models for the buildings. The last step is the development of an occlusion removal algorithm to efficiently retain parts of the buildings occluded by surrounding objects such as trees, vehicles, or street poles.;Short range laser scanners can map the interiors of the BIM projects, while long range scanners are used for mapping wide exterior areas in BIM projects.
机译:本文涉及已建成的大型BIM项目的3D建模阶段。长期以来,在BIM数据捕获的几种方法中,例如摄影测量或测距工具,激光扫描仪一直是最有效和实用的工具之一。他们可以为满足当今市场需求的3D模型生成高分辨率的点云。当前的BIM生成3D建模项目主要集中在使用一种类型的激光扫描仪数据,例如机载或陆地。根据文献,尽管具有重要意义,但在融合异类激光扫描仪数据方面并未做出重大努力(很少)。异构数据融合的重要性源于以下事实:没有一种单一类型的激光数据可以提供有关BIM的所有信息,尤其是对于存在于较大区域的大型BIM项目,例如大学建筑或文化遗产。地面激光扫描仪能够绘制建筑物和其他地面物体的立面图。但是,它们缺乏在BIM项目中绘制屋顶或更高部分的地图的功能。另一方面,机载激光扫描仪可以有效地绘制建筑物的屋顶,并且仅可以绘制立面的一小部分。本文采用“停走”制图模式获得的远程激光扫描仪数据,即短距离激光以全静态映射方式获取的扫描仪数据和机载激光数据都融合在一起,从而为大型BIM项目提供了完整有效的解决方案。;为BIM项目的3D建模,论文框架从对BIM项目的注册开始数据,在那里开发了一种新的快速自动注册算法。下一步是识别BIM项目中的不同对象(分类),并获取建筑物的3D模型。最后一步是开发一种遮挡消除算法,以有效保留建筑物周围被树木,车辆或路灯杆等物体遮挡的部分;近距离激光扫描仪可以绘制BIM项目的内部图,而远距离扫描仪可以绘制BIM项目的内部图用于在BIM项目中绘制广泛的外部区域。

著录项

  • 作者

    Mohammed, Hani Mahmoud.;

  • 作者单位

    University of Calgary (Canada).;

  • 授予单位 University of Calgary (Canada).;
  • 学科 Geotechnology.;Remote sensing.;Engineering.
  • 学位 M.Sc.
  • 年度 2015
  • 页码 135 p.
  • 总页数 135
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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