The Development of Multi-scale Data Management for CityGML-based 3D Buildings

Q3 Social Sciences
H. Karim, Alias Abdul Rahman, S. Azri, Zurairah Halim
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引用次数: 4

Abstract

The CityGML model is now the norm for smart city or digital twin city development for better planning, management, risk-related modelling and other applications. CityGML comes with five levels of detail (LoD), mainly constructed from point cloud measurements and images of several systems, resulting in a variety of accuracies and detailed models. The LoDs, also known as pre-defined multi-scale models, require large storage-memory-graphic consumption compared to single scale models. Furthermore, these multi-scales have redundancy in geometries, attributes, are costly in terms of time and workload in updating tasks, and are difficult to view in a single viewer. It is essential for data owners to engage with a suitable multi-scale spatial management solution in minimizes the drawbacks of the current implementation. The proper construction, control and management of multi-scale models are needed to encourage and expedite data sharing among data owners, agencies, stakeholders and public users for efficient information retrieval and analyses. This paper discusses the construction of the CityGML model with different LoDs using several datasets. A scale unique ID is introduced to connect all respective LoDs for cross-LoD information queries within a single viewer. The paper also highlights the benefits of intermediate outputs and limitations of the proposed solution, as well as suggestions for the future.
基于城市GML的三维建筑多尺度数据管理的开发
CityGML模型现在是智能城市或数字双城发展的规范,用于更好的规划、管理、风险相关建模和其他应用。CityGML具有五个详细级别(LoD),主要由点云测量和几个系统的图像构建,从而产生各种精度和详细模型。LoD,也称为预定义的多尺度模型,与单尺度模型相比,需要大量的存储内存图形消耗。此外,这些多尺度在几何结构和属性方面具有冗余性,在更新任务时在时间和工作量方面成本高昂,并且难以在单个查看器中查看。数据所有者必须采用合适的多尺度空间管理解决方案,以最大限度地减少当前实现的缺点。需要对多尺度模型进行适当的构建、控制和管理,以鼓励和加快数据所有者、机构、利益相关者和公共用户之间的数据共享,从而实现高效的信息检索和分析。本文讨论了使用多个数据集构建具有不同LoD的CityGML模型。引入了一个规模唯一ID来连接所有相应的LoD,以便在单个查看器内进行跨LoD信息查询。该文件还强调了中间输出的好处和拟议解决方案的局限性,以及对未来的建议。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Geomatics and Environmental Engineering
Geomatics and Environmental Engineering Earth and Planetary Sciences-Computers in Earth Sciences
CiteScore
2.30
自引率
0.00%
发文量
27
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