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INTEGRATION BETWEEN SURFACE AND SUBSURFACE SPATIAL OBJECTS FOR DEVELOPING OMAN 3D SDI BASED ON THE CITYGML STANDARD

机译:基于CityGML标准,在CityGML标准中开发阿曼3D SDI的表面和地下空间物体之间的集成

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摘要

The paper investigates the capability to integrate the surface and subsurface 3D spatial objects data structure within the 3D spatial data infrastructure (3D SDI) based on the CityGML standards. In fact, a number of countries around the world have started applying the 3D city models for their planning and infrastructure management. While others are still working toward 3D SDI by using CityGML standards. Moreover, most of these initiatives focus on the surface spatial objects with less interest to model subsurface spatial objects. However, dealing with 3D SDI requires both surface and subsurface spatial objects with clear consideration on the issues and challenges in terms of the data structure. On the other hand, the study has used geospatial tools and databases such as FME, PostgreSQL-PostGIS, and 3D City Database to generate the 3D model and to test the capability for integrating the surface and subsurface 3D spatial objects data structure within the 3D SDI. This paper concludes by describing a framework that aims to integrate surface and subsurface 3D geospatial objects data structure in Oman SDI. The authors believe that there are possible solutions based on CityGML standards for surface and subsurface 3D spatial objects. Moreover, solving the issues in data structure can establish a better vision and open new avenues for the 3D SDI.
机译:本文根据CityGML标准调查了集成3D空间数据基础设施(3D SDI)内的表面和地下3D空间对象数据结构的能力。事实上,世界各国遍布全球各国开始应用3D城市模型,以便他们的规划和基础设施管理。虽然其他人仍在使用CityGML标准迈向3D SDI。此外,这些举措中的大多数措施都侧重于表面空间物体,对模型地下空间物体的兴趣较少。然而,处理3D SDI需要表面和地下空间对象,并在数据结构方面清楚地考虑问题和挑战。另一方面,该研究使用了地理空间工具和数据库,例如FME,PostgreSQL-PostGIS和3D城市数据库,以生成3D模型,并测试集成3D SDI内的表面和地下3D空间对象数据结构的功能。本文通过描述旨在将表面和地下3D地理空间对象数据结构集成在阿曼SDI中的框架来结束。作者认为,基于表面和地下3D空间物体的CityGML标准存在可能的解决方案。此外,解决数据结构中的问题可以为3D SDI建立更好的愿景和开放新的途径。

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