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Towards an integrated three-dimensional geographic information system.

机译:迈向集成的三维地理信息系统。

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摘要

To date, little theory and few geographic information systems (GIS) have been developed to handle geographic phenomena in true three-dimensional (3-D) geometry and topology. This thesis presents an approach to the development of fundamental principles and techniques for modelling and analyzing geographic phenomena in an integrated 3-D GIS. The work includes development of a 3-D topological-vector Delaunay tetrahedral data model and development of efficient algorithms and functional components for modelling and analyzing 3-D geographic information.; Logical components of the 3-D Delaunay tetrahedral data model are defined in terms of spatial entities, spatial objects, and spatial primitives for modelling 3-D geographic phenomena. The model not only defines the geometric elements, but also identifies the spatial relationships among them. A relational database approach is adapted for structuring both spatial and nonspatial information. Furthermore, a Delaunay-based Convex Hull Insertion (CHI) algorithm is developed to efficiently construct the 3-D Delaunay tetrahedral data model. By introducing constraint and boundary surfaces into 3-D Delaunay tetrahedral tessellations, an integrated 3-D GIS model is developed for handling complex geographic phenomena in 3-D space. The 3-D Delaunay tetrahedral data model also maintains downward compatibility to modelling geographic phenomena in a two-dimensional (2-D) plane. However, 3-D surfaces, volumes, associated spatial relationships, and other 3-D spatial analysis functions are not applicable to planar data.; Fundamental 3-D GIS functions concerning data manipulation and spatial analysis based on the Delaunay tetrahedral data model are stressed in six selected categories: (1) measurement; (2) 2-D overlay; (3) 3-D overlay; (4) surface analysis; (5) volume analysis; and (6) Voronoi tessellations. Among these functions, the 3-D overlay operations are highlighted as building blocks for compound and advanced operations for handling geographic information in true 3-D geometry and topology. Other selected supporting functions in data entry and verification, data storage and data management, and data output and presentation are also developed to enhance the functional framework of the integrated 3-D GIS.
机译:迄今为止,很少有理论和地理信息系统(GIS)可以在真正的三维(3-D)几何和拓扑中处理地理现象。本文提出了一种在集成3D GIS中建模和分析地理现象的基本原理和技术的开发方法。这项工作包括开发3-D拓扑矢量Delaunay四面体数据模型,以及开发用于建模和分析3-D地理信息的有效算法和功能组件。 3-D Delaunay四面体数据模型的逻辑组件是根据用于建模3-D地理现象的空间实体,空间对象和空间图元定义的。该模型不仅定义了几何元素,还确定了它们之间的空间关系。关系数据库方法适用于结构化空间和非空间信息。此外,开发了基于Delaunay的凸包插入(CHI)算法,以有效地构建3-D Delaunay四面体数据模型。通过将约束和边界曲面引入3-D Delaunay四面体镶嵌中,开发了集成的3-D GIS模型来处理3-D空间中的复杂地理现象。 3-D Delaunay四面体数据模型还保持向下兼容性,可以对二维(2-D)平面中的地理现象建模。但是,3D表面,体积,关联的空间关系和其他3D空间分析功能不适用于平面数据。基于Delaunay四面体数据模型的有关数据处理和空间分析的基本3-D GIS功能主要集中在以下六个类别中:(1)测量; (2)二维叠加(3)3D叠加层; (4)表面分析; (5)体积分析; (6)Voronoi镶嵌。在这些功能中,将3-D叠加操作突出显示为复合和高级操作的构建块,以便在真实的3-D几何形状和拓扑结构中处理地理信息。还开发了在数据输入和验证,数据存储和数据管理以及数据输出和表示中选择的其他支持功能,以增强集成3-D GIS的功能框架。

著录项

  • 作者

    Tsai, Jung-Der Victor.;

  • 作者单位

    The University of Wisconsin - Madison.;

  • 授予单位 The University of Wisconsin - Madison.;
  • 学科 Engineering Civil.; Geography.
  • 学位 Ph.D.
  • 年度 1994
  • 页码 247 p.
  • 总页数 247
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 建筑科学;自然地理学;
  • 关键词

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