A Web Coverage Ontology for Geospatial Web Applications

Xia Wang, Jinsongdi Yu, P. Baumann
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引用次数: 4

Abstract

Today's Web contains not only conventional textual data, but also raster data, e.g., 2-D satellite images, 3-D or 4-D seismic sense data. Coverage is a core abstract feature of raster data, and coverage services are becoming a very important kind of web applications, especially in the geospatial domain. The OGC WCS and WCPS standards have invested a lot of effort to specify the capabilities and processing of web coverage services. However, a formal coverage Ontology for its semantic is still missing, which has severely impeded the development of diverse web coverage applications, their scalability in terms of complexity, and their automatic orchestration and interoperability on the semantic Web. Based on the existing geospatial specifications and industry standards, we proposed a web coverage Ontology (WCO) for modeling the core features of coverages, and it extended current semantic technologies with several new complex data types required by raster services. New reasoning capabilities down to the pixel level of raster data also have been investigated and implemented.
地理空间Web应用的Web覆盖本体
今天的网络不仅包含传统的文本数据,还包含栅格数据,例如二维卫星图像、三维或4d地震传感数据。覆盖是栅格数据的一个核心抽象特征,覆盖服务正在成为一种非常重要的web应用,特别是在地理空间领域。OGC WCS和WCPS标准投入了大量精力来指定web覆盖服务的功能和处理。然而,一个正式的语义覆盖本体仍然缺失,这严重阻碍了各种web覆盖应用程序的发展,它们在复杂性方面的可扩展性,以及它们在语义web上的自动编排和互操作性。在现有地理空间规范和行业标准的基础上,提出了一种网络覆盖本体(web coverage Ontology, WCO)来对覆盖的核心特征进行建模,并对现有的语义技术进行了扩展,提供了栅格服务所需的几种新的复杂数据类型。新的推理能力下降到像素级的栅格数据也已被研究和实现。
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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