基于gml的可互操作地理数据库

IF 2.1 Q3 REMOTE SENSING
Chuanrong Zhang, Wei Li, M. Day, Z-R Peng
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引用次数: 29

摘要

针对不同的程序和应用开发了许多地理数据库,但由于这些不同的数据库之间不存在互操作性,数据采集和数据共享仍然是一个大问题。本研究提出了一种地理标记语言(GML)方法来构建地理数据库,以实现互操作性。作为一个开放的、非专有的行业标准,GML克服了当前GIS软件专有数据模型和数据库结构的问题。与地理数据文件(GDF)和空间数据传输标准(SDTS)等其他标准相比,GML方法具有实现在线数据交换的优势。GML有望提供一种通过万维网共享和使用现有空间数据的标准方式。一个基于gml的可互操作的石林景观保护地理数据库作为案例研究实施。它展示了公众如何通过用户友好的界面访问和使用基于GML的空间数据库,以及GML可以在Web上提供高质量的矢量数据。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
GML-Based Interoperable Geographical Databases
Many geographical databases have been developed for different programs and applications, but data acquisition and data sharing are still a big problem because no interoperability exists among these different databases. This study presents a GML (Geography Markup Language) approach to build a geographical database in order to enable interoperability. As an open, non-proprietary industry standard, GML overcomes the problems of current GIS software proprietary data models and database structures. Compared with other standards, such as the Geographic Data File (GDF) and Spatial Data Transfer Standard (SDTS), the GML approach has the advantage of enabling on-line data exchange. GML holds promise in providing a standard way to share and use existing spatial data over the World Wide Web. A GML-based interoperable geographical database for the conservation of the Stone Forest Landscape is implemented as a case study. It shows how the public can access and use the GML-based spatial database through a user-friendly interface and that GML can deliver high quality vector data on the Web.
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来源期刊
Geodesy and Cartography
Geodesy and Cartography REMOTE SENSING-
CiteScore
1.50
自引率
0.00%
发文量
0
审稿时长
15 weeks
期刊介绍: THE JOURNAL IS DESIGNED FOR PUBLISHING PAPERS CONCERNING THE FOLLOWING FIELDS OF RESEARCH: •study, establishment and improvement of the geodesy and mapping technologies, •establishing and improving the geodetic networks, •theoretical and practical principles of developing standards for geodetic measurements, •mathematical treatment of the geodetic and photogrammetric measurements, •controlling and application of the permanent GPS stations, •study and measurements of Earth’s figure and parameters of the gravity field, •study and development the geoid models,
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