An ontology based approach to intelligent data mining for environmental virtual warehouses of sensor data

Mircea Trifan, B. Ionescu, D. Ionescu, O. Proștean, G. Proștean
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引用次数: 11

Abstract

The rapid development of sensor technology led to large deployments of collections of sensing nodes working together to collect information for light, temperature, atmospheric pressure, air pollutions parameters, images, and other relevant data according to specific Environmental applications. The ability of the sensor networks to collect information accurately and reliably enables building both real-time detection and early warning systems. Environment parameter measurement and supervision received a lot of attention from both academic and industrial research communities around the world. Applications supporting decisions for rapid coordinated responses to threats such as bushfires, tsunamis, earthquakes, and other crisis situation have been devised. In this paper a combined ontology and rule-bases intelligent system build over a platform for sensor data warehousing for decision support is introduced. A combined ontology of sensor networks and sensor data for environment parameter measurement is designed and discussed. A set of rule-based systems each tailored to a domain of networked sensors are linked together through a middle-layer of rule-base systems which reason with facts classified and structured as instances of the common sensor ontology. A set of meta-rules direct the intelligent activity of the whole system and requires individual rule-based systems to reason upon specific facts. The paper will also discuss the architecture and algorithms for data mining, fusion and reasoning for specific situation in Environment monitoring and supervision. Results obtained from experiments performed on the system prototype are given at the end of this paper.
基于本体的传感器数据环境虚拟仓库智能数据挖掘方法
传感器技术的快速发展导致大量传感器节点集合的部署,这些节点协同工作,根据特定的环境应用收集光、温度、大气压、空气污染参数、图像和其他相关数据的信息。传感器网络准确可靠地收集信息的能力使构建实时检测和早期预警系统成为可能。环境参数的测量与监控受到了国内外学术界和产业界的广泛关注。已经设计了支持对诸如森林火灾、海啸、地震和其他危机情况等威胁作出快速协调反应的决策的应用程序。本文介绍了在传感器数据仓库平台上构建的本体与规则相结合的智能系统。设计并讨论了一种用于环境参数测量的传感器网络与传感器数据相结合的本体。一组基于规则的系统,每个系统都是为网络传感器的一个领域量身定制的,通过一个中间层的基于规则的系统连接在一起,这些基于规则的系统根据分类和结构为公共传感器本体实例的事实进行推理。一组元规则指导整个系统的智能活动,并要求各个基于规则的系统根据特定事实进行推理。本文还将针对环境监测和监管的具体情况,讨论数据挖掘、融合和推理的体系结构和算法。最后给出了系统样机的实验结果。
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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