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Designing a Geo-scientific Request Language- A Database Approach

机译:设计一种地学请求语言-一种数据库方法

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A large part of sensor, image, and statistics data in the Earth Sciences naturally come as data points aligned to regular grids of some dimension, including 1-D time series, 2-D imagery, 3-D image time series and volumetric data, and 4-D spatio-temporal data. Frequently repositories have to host objects of multi-Terabyte size, in the future multi-Petabytes. Serving this information category, large multi-dimensional arrays, is a task of increasing importance among the Earth Sciences. Still, however, ad-hoc implementations with focused functionality prevail which lack the flexibility of SQL-enabled databases.rnThe Web Coverage Processing Service (WCPS) geo raster model and language allows navigation, extraction, and ad-hoc analysis on multi-dimensional geoscientific raster data which can be geo-referenced or not. The request language has been designed to offer some key properties considered advantageous by the database community: it is formalized, declarative, data independent, op-timizable, and safe in evaluation. WCPS has been adopted as an international standard by the Open GeoSpatial Consortium (OGC) in December 2008. The reference implementation is almost finished. Actually, the embedding into the modular framework of the OGC geo service standards has posed particular constraints which the design had to respect. We discuss conceptual model, query language, and the context using real-life use case scenarios.
机译:自然科学中的传感器,图像和统计数据中的很大一部分自然是作为数据点与某个维度的规则网格对齐的,这些数据点包括一维时间序列,二维图像,三维图像时间序列和体积数据,和4D时空数据。存储库经常必须托管数TB大小的对象,而将来的对象则是数PB。为这种信息类别(大型多维数组)提供服务是地球科学中日益重要的任务。但是,仍然具有优势功能的即席实现仍然普遍存在,但缺乏启用SQL的数据库的灵活性。rnWeb Coverage Processing Service(WCPS)地理栅格模型和语言允许在多维地学上进行导航,提取和即席分析可以地理参考或不可以地理参考的栅格数据。请求语言已被设计为提供数据库社区认为有利的一些关键属性:它是形式化,声明性,独立于数据,可优化且评估安全的。 WCPS已于2008年12月被开放地理空间联盟(OGC)采纳为国际标准。参考实施已接近完成。实际上,嵌入OGC地理服务标准的模块化框架已经带来了设计必须遵守的特殊约束。我们使用实际用例场景讨论概念模型,查询语言和上下文。

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