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Ontology development for run-time safety management methodology in Smart Work Environments using ambient knowledge

机译:使用环境知识为智能工作环境中的运行时安全管理方法论进行本体开发

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This paper presents the development of a decision support system for run-time safety management in Smart Work Environments (SWEs). Our approach consists of four main phases: (ⅰ) definition of the basic steps of a methodology for run-time safety management; (ⅱ) development of an ontological knowledge-base of safety in work environments; (ⅲ) definition of constraints on the ontology based on organizations' safety protocols; (ⅳ) communication of relevant information to each actor in the safety management team. We propose a generic ontological model of safety expertise, based on Occupational Safety and Health Regulations (OSHA), that is employed as Knowledge required in our safety management methodology based on the MAPE-K (Monitor-Analyze-Plan-Execute and Knowledge) loop. We present the RAM1RES (Risk-Adaptive Management in Resilient Environments with Security) tool, implementing this methodology. RAM1RES is developed as a dashboard, supporting the safety management team in understanding the risk and its consequences, and to support decision making in risk treatment. RAMIRES interacts with the SWE and the safety management team (actors) in order to: (ⅰ) communicate the risks and preventive strategies to actors; (ⅱ) obtain more data about the observed areas to understand the risk and its consequences; and (ⅲ) execute the automatic preventive strategies and support actors in the execution of human-operated preventive strategies. In this paper, we show the details on concepts designed in the safety ontology and illustrate how these concepts can be extended to provide an abstract model of a specific use case. Furthermore, we propose the definition of constraints on the ontology using logic-based rules. Finally, we discuss the advantages and limitations of the proposed methodology regarding the resilience of the environment.
机译:本文介绍了智能工作环境(SWE)中用于运行时安全管理的决策支持系统的开发。我们的方法包括四个主要阶段:(ⅰ)定义运行时安全管理方法的基本步骤; (ⅱ)建立工作环境中的安全本体论知识库; (ⅲ)根据组织的安全协议定义对本体的约束; (ⅳ)将相关信息传达给安全管理团队中的每个参与者。我们基于职业安全与健康条例(OSHA),提出了一种安全专业知识的通用本体论模型,该模型被用作基于MAPE-K(监控,分析,计划和执行)循环的安全管理方法学中所需要的知识。我们介绍了实现此方法的RAM1RES(具有安全性的弹性环境中的风险自适应管理)工具。 RAM1RES开发为仪表板,可支持安全管理团队了解风险及其后果,并支持风险处理中的决策制定。 RAMIRES与SWE和安全管理团队(参与者)进行互动,以:(ⅰ)向参与者传达风险和预防策略; (ⅱ)获取有关观察区域的更多数据,以了解风险及其后果; (ⅲ)执行自动预防策略并支持参与者执行人类操作的预防策略。在本文中,我们将详细介绍安全本体中设计的概念,并说明如何扩展这些概念以提供特定用例的抽象模型。此外,我们提出了使用基于逻辑的规则对本体进行约束的定义。最后,我们讨论了所提出的方法在环境弹性方面的优势和局限性。

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