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A decision support system for urban infrastructure inter-asset management employing domain ontologies and qualitative uncertainty-based reasoning

机译:城市基础设施的决策支持系统,使用域本体和基于定性不确定性的推理

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Urban infrastructure assets (e.g. roads, water pipes) perform critical functions to the health and well-being of society. Although it has been widely recognised that different infrastructure assets are highly interconnected, infrastructure management in practice such as planning, installation and maintenance are often undertaken by different stakeholders without considering these dependencies due to the lack of relevant data and cross-domain knowledge, which may cause unexpected cascading social, economic and environmental effects. In this paper, we present a knowledge based decision support system for urban infrastructure inter-asset management. By considering various infrastructure assets (e.g. road, ground, cable), triggers (e.g. pipe leaking) and potential consequences (e.g. traffic disruption) as a holistic system, we model each sub-domain using a modular ontology and encapsulate the interdependence between them using a set of rules. Moreover, qualitative likelihood is assigned to each rule by domain experts (e.g. civil engineers) to encode the uncertainty of knowledge, and an inference engine is applied to predict the potential consequences of a given trigger with location specific data and the encoded rules. A web-based prototype system has been developed based on the above concept and demonstrated to a wide range of stakeholders. The system can assist in the process of decision making by aiding data collation and integration, as well as presenting potential consequences of possible triggers, advising on whether additional information is needed or suggesting ways of obtaining such information. The work shows an intelligent approach to integrate and process multi-source data to pioneer a novel way to aid a complex decision process with a high social impact. (C) 2020 The Authors. Published by Elsevier Ltd.
机译:城市基础设施资产(例如,道路,水管)对社会的健康和福祉执行关键作用。虽然已被广泛认识到不同的基础设施资产是高度互联的,但在规划,安装和维护等实践中的基础设施管理通常由不同的利益相关者进行,而不是由于缺乏相关数据和跨领域知识而导致这些依赖项导致意外的级联社会,经济和环境影响。在本文中,我们介绍了一个基于知识的资产管理范围管理的决策支持系统。通过考虑各种基础设施资产(例如,道路,地,电缆),触发器(例如管道泄漏)和潜在后果(例如交通中断)作为整体系统,我们使用模块化本体模拟每个子域,并使用它们之间的相互依赖性封装一组规则。此外,通过域专家(例如土木工程师)将定性可能性分配给每个规则来编码知识的不确定性,并且应用推理引擎以预测给定触发器与位置特定数据和编码规则的潜在后果。基于上述概念开发了基于Web的原型系统,并证明了广泛的利益相关者。该系统可以帮助通过辅助数据排序和集成来协助决策制定,以及提供可能触发的潜在后果,建议是否需要其他信息或建议获得此类信息的方法。该工作表明了一种智能方法来集成和处理多源数据,以提出一种新颖的方式,以帮助具有高社会影响的复杂决策过程。 (c)2020作者。 elsevier有限公司出版

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