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AUTOMATIC CONVERSION OF CITYGML TO IFC

机译:将CityGML的自动转换为IFC

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The trend of increased usage of both BIM and 3D GIS and the similarity between the two has led to an increase in the overlap between them. A key application of such overlap is providing geospatial context data for BIM models through importing 3D GIS-data to BIM software to help in different design-related issues. However, this is currently difficult because of the lack of support in BIM software for the formats and data models of 3D Geo-information. This paper deals with this issue by developing and implementing a methodology to convert the common open 3D city model data model into the most common open BIM data format, namely CityGML (Gr?ger et al., 2012) to IFC (buildingsmart, 2019b). For the aim of this study, the two standards are divided into 5 comparable subparts: Semantics, Geometry, Geographical coordinates, Topology, and Encoding. The characteristics of each of these subparts are studied and a conversion method is proposed for each of them from the former standard to the latter. This is done by performing a semantic and geometrical mapping between the two standards, converting the georeferencing from global to local, converting the encoding that the two standards use from XML to STEP, and deciding which topological relations are to be retained. A prototype implementation has been created using Python to combine the above tasks. The work presented in this paper can provide a foundation for future work in converting CityGML to IFC. It provides an insight into the relationship between the two standards and a methodology for the conversion from one to the other, and the process of developing software to perform such conversion. This is done in a way that can be extended for future specific needs.
机译:BIM和3D GIS增加的趋势以及两者之间的相似性导致它们之间的重叠增加。这种重叠的关键应用是通过将3D GIS数据导入BIM软件来提供BIM模型的地理空间上下文数据,以帮助在不同的设计相关问题。然而,这是由于BIM软件缺乏支持的3D地理信息的格式和数据模型而困难。本文通过开发和实施方法来涉及此问题,以将公共开放式3D城市模型数据模型转换为最常见的开放BIM数据格式,即CityGML(GR?Ger等,2012)到IFC(Bui​​ldingsMart,2019B) 。对于本研究的目的,这两个标准分为5个可比子部分:语义,几何,地理坐标,拓扑和编码。研究了这些子部分中的每一个的特性,并为其中的每一个从前标准提出了转换方法。这是通过在两个标准之间执行语义和几何映射来完成的,将来自全局的地理转换为本地,转换编码的两个标准从XML到步骤,以及决定要保留哪种拓扑关系。使用Python创建了原型实现,以组合上述任务。本文提出的工作可以为将来的工作转换为IFC,为将来的工作提供基础。它提供了洞察两种标准与从另一个转换的方法之间的关系,以及开发软件以执行此类转换的过程。这是以可以延长的方式完成的,以便未来的特定需求。

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