实时WebGIS的虚拟数据仓库体系结构

C. Pasquale, B. Ionescu, D. Ionescu, V. D. Lecce, Andrea Gurerero
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引用次数: 10

摘要

环境监测要求通过科学分析将从传感器和/或数据存储库获得的原始数据转化为对当前生态系统状况和时间和空间演变趋势的评估。不同来源产生的海量数据,所采用的环境模型的复杂性,以及科学家和政府机构之间必要的分布式协作,都需要特定的应用程序来处理和理解环境现象并验证结果。GIS领域受到了科学和工业应用界的广泛关注。许多算法、协议和应用程序已经通过耳朵来收集、调查、分析和综合从温度、压力等传感器到卫星成像获得的数据。几乎所有的尝试都是为了处理从集中存储库获得的数据。很少或几乎没有关于用于在生成时显示地理相关数据的通用和灵活机制的报道。在本文中,我们提出了一个GIS平台,其目标是有效地挖掘、融合和利用环境数据,并根据数据产生的速度综合显示结果。提出了一种利用GIS信息的虚拟数据仓库来管理和收集来自多个数据源的数据。该平台允许用户访问不同来源收集的环境数据,对数据进行注册、规范化和可视化,以探索和分析复杂的结构和关系,并使用分布式计算资源和web应用程序处理数据。为了评估所提出的原型的有效性,我们提出了一个关于Modis文件和地理定位真实传感器数据融合用于空气质量监测的案例研究。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Virtual Data Warehouse architecture for real-time WebGIS
Environmental monitoring requires that raw data acquired from sensors and/or data repositories be transformed, by scientific analysis, into assessments of current ecosystem conditions and in evolution trends in time and space. The huge data amount produced by different sources, the complexity of the environmental models adopted and the necessary distributed collaboration between scientists and government agencies, require specific applications to process and understand environmental phenomena and validate results. GIS domain received a great deal of attention from the scientific and industrial applications communities. Many algorithms, protocols, and applications have been built through the ears for the collection, investigation, analysis, and synthesis of data obtained from sensors ranging from temperature, pressure, etc. to satellite imaging. Almost all attempts have been made to deal with data obtained from lumped repositories. Little or almost none works are reported about a general and flexible mechanism used to display geo-dependent data as it is generated. In this paper we present a GIS platform whose goal is to efficiently mine, fuse, and exploit environmental data and to synthetically display the results at the pace the data is produces. A virtual data warehouse to use GIS information is proposed to manage and collect data acquired by and from several sources. The proposed platform allows users to access to environmental data collected by different sources, to register, normalize and visualize data for exploring and analyzing complex structure and relationship, to process data using distributed computing resources and web applications. To evaluate the effectiveness of the proposed prototype, we present a case study related to data fusion of Modis files and Geo-Located real sensor data for air quality monitoring.
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