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Using sensor ontologies to create reasoning-ready sensor data for real-time hazard monitoring in a spatial decision support system.

机译:使用传感器本体创建可随时进行推理的传感器数据,以便在空间决策支持系统中进行实时危害监视。

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摘要

In order to protect at-risk communities and critical infrastructure, hazard managers use sensor networks to monitor the landscapes and phenomena associated with potential hazards. This strategy can produce large amounts of data, but when investigating an often unstructured problem such as hazard detection it can be beneficial to apply automated analysis routines and artificial intelligence techniques such as reasoning. Current sensor web infrastructure, however, is not designed to support this information-centric monitoring perspective. A generalized methodology to transform typical sensor data representations into a form that enables these analysis techniques has been created and is demonstrated through an implementation that bridges geospatial standards for sensor data and descriptions with an ontology-based monitoring environment. An ontology that describes sensors and measurements so they may be understood by an SDSS has also been developed. These tools have been integrated into a monitoring environment, allowing the hazard manager to thoroughly investigate potential hazards.
机译:为了保护处于危险中的社区和关键基础设施,危害管理人员使用传感器网络来监视与潜在危害相关的景观和现象。这种策略可以产生大量数据,但是在调查通常是非结构化的问题(例如危害检测)时,应用自动化分析例程和人工智能技术(例如推理)可能会有所帮助。但是,当前的传感器Web基础结构并非旨在支持这种以信息为中心的监视角度。已经创建了将一般传感器数据表示形式转换为支持这些分析技术的形式的通用方法,并通过将传感器数据和描述的地理空间标准与基于本体的监视环境进行桥接的实现方式进行了演示。还开发了一种描述传感器和测量值的本体,以使它们可以被SDSS理解。这些工具已集成到监视环境中,使危害管理者可以彻底调查潜在危害。

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