首页> 外文期刊>International Archives of the Photogrammetry, Remote Sensing and Spatial Information Sciences >EXTENDING INDOOR OPEN STREET MAPPING ENVIRONMENTS TO NAVIGABLE 3D CITYGML BUILDING MODELS: EMERGENCY RESPONSE ASSESSMENT
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EXTENDING INDOOR OPEN STREET MAPPING ENVIRONMENTS TO NAVIGABLE 3D CITYGML BUILDING MODELS: EMERGENCY RESPONSE ASSESSMENT

机译:将室内开放式街道映射环境扩展到可导航的3D CityGML建筑模型:紧急响应评估

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Disaster scenarios in high-rise buildings such as the Address Downtown, Dubai or Grenfell Tower, London have showed ones again the importance of data information availability for emergency management in buildings. 3D visualization of indoor routing services using extensive and high quality geographic data sources is essential for spatial analysis in emergency responses. In order to facilitate emergency response simulations, a combination of geometrical, graphical and semantic information is essential. Successful and efficient emergency evacuation responses is facilitated by the availability of both digital static and dynamic information of the incident site. However, interruptions may be encountered with the availability of dynamic data, where static data developed using indoor navigation ontologies serve as an alternative to inform the first responders. Thus, it is necessary to obtain a firm, interactive and quasi-realistic virtual simulation of the building environments. Voxelized CityGML models imported into voxel based hazard simulation systems fits well into the simulation algorithm requirements (Groger et al., 2008; Moreno et.al, 2010). Therefore, the research investigates an alternative platform for generating CityGML spatial analysis models. LoD4 models are developed using Computer Aided Design (Auto CAD) 2D files, crowdsourced geo-data (OpenStreetMap) and open source tools. A combination of software packages is utilized for 3D reconstruction of building interiors. This process is achieved through a Java application developed by researchers at Heidelberg University. Conclusions drawn from the research validate the 3D CityGML model generation process as an international standard to effectively enhance the outcome of emergency evacuation simulations of high rise buildings.
机译:高层建筑(例如迪拜的地址市中心或伦敦的格林菲尔大厦)的灾难场景再次表明,数据信息可用性对于建筑物紧急管理的重要性。使用大量高质量的地理数据源进行室内路由服务的3D可视化对于紧急响应中的空间分析至关重要。为了促进应急响应模拟,几何,图形和语义信息的组合是必不可少的。事件现场数字静态和动态信息的可用性有助于成功而有效的紧急疏散响应。但是,动态数据的可用性可能会遇到中断,其中使用室内导航本体开发的静态数据可以作为通知第一响应者的替代方法。因此,有必要获得建筑环境的牢固,交互式和准现实的虚拟仿真。导入基于体素的危害模拟系统中的体素化CityGML模型非常适合模拟算法要求(Groger等,2008; Moreno等,2010)。因此,本研究调查了用于生成CityGML空间分析模型的替代平台。 LoD4模型是使用计算机辅助设计(Auto CAD)2D文件,众包地理数据(OpenStreetMap)和开源工具开发的。软件包的组合用于建筑物内部的3D重建。该过程是通过海德堡大学的研究人员开发的Java应用程序实现的。研究得出的结论证明3D CityGML模型生成过程是国际标准,可以有效地增强高层建筑紧急疏散模拟的结果。

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