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CELL COMPLEXES TOPOLOGICAL LINKS FOR BUILDINGS IN CITYGML

机译:细胞复杂化了CITYGML中建筑物的拓扑链接

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Topology has served as the foundation for analysis in modelling cities and buildings. CityGML as an international standard for 3D city modelling utilises a simple ‘topology-incidence’ which links connected geometries by reference without the presence of a complete topological model to explicitly preserve the topological properties. This paper explains the use of cell complexes topological links for buildings in CityGML. Two datasets were used in this study which consisted of two connected buildings and two disjointed buildings. The geometries which make up the buildings were extracted as 0D nodes, 1D lines, 2D surfaces and 3D buildings. The resulting topological links generated are from a-0 links to a-3 links where a-0 links are lines that connect nodes (1D), a-1 links are connected lines that form surfaces (2D), a-2 links are connected surfaces that makes up a building (3D) and a-3 links represents connections between 3D buildings. The connected buildings started with a generated total of 57 a-0 links which decreased to 2 a-2 links where each building is represented by 1 a-2 link. A similar result was obtained for the disjointed buildings where ultimately the buildings were individually represented by an a-2 link. Besides that, a-3 links could be generated for the connected buildings which described that building 0 was connected to building 1 and vice versa. This shows that the cell complexes topological links is a simple yet compact way of preserving topological properties and facilitating navigation through the connected objects.
机译:拓扑已成为建模城市和建筑物的基础。 CityGML是3D城市建模的国际标准,它利用简单的“拓扑事件”,通过引用将连接的几何图形链接在一起,而无需使用完整的拓扑模型来明确保留拓扑属性。本文介绍了在CityGML中建筑物使用细胞复合体拓扑链接的方法。本研究使用了两个数据集,其中包括两个相连的建筑物和两个不相连的建筑物。提取构成建筑物的几何图形作为0D节点,1D线,2D曲面和3D建筑物。生成的结果拓扑链接是从a-0链接到a-3链接,其中a-0链接是连接节点的线(1D),a-1链接是形成表面的连接线(2D),a-2链接已连接构成建筑物(3D)和a-3链接的曲面表示3D建筑物之间的连接。连接的建筑物从生成的总共57 a-0链接开始,减少到2 a-2链接,其中每个建筑物由1 a-2链接表示。对于分离的建​​筑物也获得了类似的结果,最终建筑物由a-2链接单独表示。除此之外,还可以为连接的建筑物生成a-3链接,这说明建筑物0已连接到建筑物1,反之亦然。这表明,细胞复合体的拓扑链接是一种简单但紧凑的方法,可以保留拓扑属性并促进在连接对象之间的导航。

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