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首页> 外文期刊>Geoinformatica: An international journal of advances of computer science for geographic >A Spatial Access-Oriented Implementation of a 3-D GIS Topological Data Model for Urban Entities
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A Spatial Access-Oriented Implementation of a 3-D GIS Topological Data Model for Urban Entities

机译:面向空间访问的城市实体3-D GIS拓扑数据模型的实现

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3-D analysis in GIS is still one of the most challenging topics for research. With the goal being to model possible movement within the built environment, this paper, therefore, proposes a new approach to handling connectivity relationships among 3-D objects in urban environments in order to implement spatial access analyses in 3-D space. To achieve this goal, this paper introduces a 3-D network data model called the geometric network model (GNM), which has been developed by transforming the combinatorial data model (CDM), representing a connectivity relationship among 3-D objects using a dual graph. For the transformation, this paper presents (1) an O(n~2) algorithm for computing a straight medial axis transformation (MAT), (2) the processes for transforming phenomena from 3-D CDM to 3-D GNM, and (3) spatial access algorithms for the 3-D geometric network based upon the Dijkstra algorithm. Using the reconstructed geometric network generated from the transformations, spatial queries based upon the complex connectivity relationships between 3-D urban entities are implemented using Dijkstra algorithm. Finally, the paper presents the results of an experimental implementation of a 3-D network data model (GNM) using GIS data of an area in downtown Columbus, Ohio.
机译:GIS中的3-D分析仍然是研究中最具挑战性的主题之一。因此,以建模环境中可能的运动为目标,本文提出了一种新的方法来处理城市环境中3D对象之间的连通性关系,以便在3D空间中实现空间访问分析。为了实现此目标,本文介绍了一种称为几何网络模型(GNM)的3-D网络数据模型,该模型是通过转换组合数据模型(CDM)来开发的,该模型表示了使用对偶的3-D对象之间的连通性关系图形。对于变换,本文提出(1)一种用于计算直线中轴变换(MAT)的O(n〜2)算法,(2)将现象从3-D CDM转换为3-D GNM的过程,以及( 3)基于Dijkstra算法的3D几何网络的空间访问算法。使用从转换生成的重构几何网络,使用Dijkstra算法实现基于3-D城市实体之间复杂连接关系的空间查询。最后,本文介绍了使用俄亥俄州俄亥俄州哥伦布市区的GIS数据对3-D网络数据模型(GNM)进行实验性实施的结果。

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