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Designing and implementing a geologic information system using a spatiotemporal ontology model for a geologic map of Korea

机译:使用时空本体模型设计和实现韩国地质地图的地质信息系统

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摘要

A geologic information system was utilized for geologic mapping in Korea using a spatiotemporal ontology model. Five steps were required to make the GIS representation of the geologic map information. The first step was to limit the geologic mapping to Korean area. The second step was to extract the rock units with spatial objects from the geologic map and the geologic time units with temporal objects. The third step was to standardize the geologic terms in Korean and English for both the spatial and temporal objects. The fourth step was to conceptualize the classified objects in the geologic map units and the formation of guidelines for the specification of a spatiotemporal ontology model. Finally, we constructed a spatiotemporal retrieval system and an ontology system related to the geologic map of Korea, which were applied to the spatiotemporal ontology model. The spatiotemporal ontology model was defined as a sophisticated model that provides for the evolution from a data base to a knowledge base. This ontology model can be conceptualized as a well-defined set of terms used for expressing spatial objects in rock units and temporal objects in geologic time units, as well as a system of contents and structures. In addition, it includes symbology units such as coior and pattern symbols mapped one-to-one with the spatiotemporal concepts. The existing information retrieval services provide information that is limited to the user's knowledge, whereas our geologic ontology system provides a broad range of information in graphical form, including locations and interrelationships. In this way, the information can be upgraded to the level of knowledge. A geologic term tree was designed, based on the existing classification schemes, with the goal of creating an accessible internet source.
机译:地质信息系统被用于韩国的时空本体模型。要使GIS表示地质地图信息需要五个步骤。第一步是将地质图限制在韩国地区。第二步是从地质地图中提取具有空间对象的岩石单元,并从时间对象中提取地质时间单元。第三步是对时空对象的韩文和英文地质术语进行标准化。第四步是将地质地图单元中的分类对象概念化,并为时空本体模型的规范制定指南。最后,我们构建了与韩国地质图相关的时空检索系统和本体系统,并将其应用于时空本体模型。时空本体模型被定义为一个复杂的模型,它提供了从数据库到知识库的演变。可以将该本体模型概念化为一组定义明确的术语,这些术语用于表示岩石单位的空间对象和地质时间单位的时间对象,以及内容和结构的系统。此外,它还包括符号系统,例如与时空概念一对一映射的颜色和图案符号。现有的信息检索服务提供的信息仅限于用户的知识,而我们的地质本体系统以图形形式提供广泛的信息,包括位置和相互关系。这样,信息可以升级到知识水平。基于现有分类方案,设计了地质学术语树,其目标是创建可访问的互联网资源。

著录项

  • 来源
    《Computers & geosciences》 |2012年第2012期|p.173-186|共14页
  • 作者单位

    Ceoscience Information Center, Korea Institute of Ceoscience & Mineral Resources (K1GAM), 92 Gwahak-ro, Yuseong-gu, Daejeon 305-350, South Korea;

    Department of Computer and Information Engineering, Kunsan National University, 558 Dea-hak-ro, Kunsan, Jeonbuk, South Korea;

    Database/Bioinformatics Lab, School of Electrical & Computer Engineering, Chungbuk National University, 12 Gaeshin-dong, Cheongju, Chungbuk 361-763, South Korea;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    geologic map; ontology; spatiotemporal object; GIS; Korea;

    机译:地质图本体时空对象地理信息系统韩国;

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