Innovative Approach to Convert Geographic Information System-Based Highway Models into Multidimensional Building Information Modeling Platforms Using Dynamo

Xiaoqiang Hu, Yi Jiang, Shuo Li
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Abstract

This study proposes an innovative process of transforming a geographic information system (GIS)-based highway model into a robust building information modeling (BIM) platform using Dynamo visual programming tool. The existing GIS system used by the Indiana Department of Transportation for highway network representation has significant limitations of data storage and handling capacity, representation of complex entities, and inclusion of crucial traffic data from weigh-in-motion and automatic traffic recorder stations. The developed process involves converting poly-curves from the GIS model into model-curves compatible with BIM, classifying attributes into shape families, and integrating traffic data from traffic recorder stations. The resulting multidimensional BIM platform, extending from three to eight dimensions, encompasses essential project details and traffic data. To ensure interoperability, an Open BIM process involving the generation of an industry foundation classes (IFC) file is utilized, allowing efficient data exchange among different software platforms and stakeholders.
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利用 Dynamo 将基于地理信息系统的公路模型转换为多维建筑信息建模平台的创新方法
本研究利用 Dynamo 可视化编程工具,提出了一种将基于地理信息系统 (GIS) 的高速公路模型转化为强大的建筑信息建模 (BIM) 平台的创新方法。印第安纳州交通部用于表示高速公路网络的现有 GIS 系统在数据存储和处理能力、复杂实体的表示以及包含来自称重运动站和自动交通记录仪站的重要交通数据方面存在很大的局限性。所开发的流程包括将 GIS 模型中的多曲线转换为与 BIM 兼容的模型曲线,将属性分类为形状族,以及整合交通记录仪站的交通数据。由此产生的多维 BIM 平台从三维扩展到八维,包含了重要的项目细节和交通数据。为确保互操作性,采用了开放式 BIM 流程,其中包括生成行业基础类(IFC)文件,以便在不同软件平台和利益相关者之间进行有效的数据交换。
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