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An Ontology-Underpinned Emergency Response System for Water Pollution Accidents

机译:基于本体的水污染事故应急系统

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With the unceasing development and maturation of environment geographic information system, the response to water pollution accidents has been digitalized through the combination of monitoring sensors, management servers, and application software. However, most of these systems only achieve the basic and general geospatial data management and functional process tasks by adopting mechanistic water-quality models. To satisfy the sustainable monitoring and real-time emergency response application demand of the government and public users, it is a hotspot to study how to make the water pollution information being semantic and make the referred applications intelligent. Thus, the architecture of the ontology-underpinned emergency response system for water pollution accidents is proposed in this paper. This paper also makes a case study for usability testing of the water ontology models, and emergency response rules through an online water pollution emergency response system. The system contributes scientifically to the safety and sustainability of drinking water by providing emergency response and decision-making to the government and public in a timely manner.
机译:随着环境地理信息系统的不断发展和成熟,对水污染事故的响应已通过监视传感器,管理服务器和应用软件的组合实现了数字化。但是,大多数这些系统通过采用机械水质模型只能实现基本和通用的地理空间数据管理以及功能性过程任务。为了满足政府和公众用户对可持续监测和实时应急应用的需求,研究如何使水污染信息具有语义性和使所引用的应用智能化是一个热点。因此,本文提出了一种以本体为基础的水污染事故应急响应体系结构。本文还通过在线水污染应急响应系统对水本体模型的可用性测试和应急响应规则进行了案例研究。该系统通过及时向政府和公众提供应急响应和决策,科学地为饮用水的安全和可持续性做出了贡献。

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