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ToolSHeD™: The development and evaluation of a decision support tool for health and safety in construction design

机译:ToolsHeD™:开发和评估建筑设计中健康和安全的决策支持工具

摘要

Purpose - The purpose of this paper is to describe an innovative information and decision support tool (ToolSHeD(TM)) developed to help construction designers to integrate the management of OHS risk into the design process. The underlying structure of the prototype web-based system and the process of knowledge acquisition and modelling are described. Design/methodology/approach - The ToolSHeD(TM) research and development project involved the capture of expert reasoning regarding design impacts upon occupational health and safety (OHS) risk. This knowledge was structured using an innovative method well-suited to modelling knowledge in the context of uncertainty and discretionary decision-making. Example "argument trees" are presented, representing the reasoning used by a panel of experts to assess the risk of falling from height during roof maintenance work. The advantage of using this method for modelling OHS knowledge, compared to the use of simplistic rules, is discussed. Findings - The ToolSHeD™ prototype development and testing reveals that argument trees can represent design safety risk knowledge effectively. Practical implications - The translation of argument trees into a web-based decision support tool is described and the potential impact of this tool in providing construction designers (architects and engineers) with easy and inexpensive access to expert OHS knowledge is discussed. Originality/value - The paper describes a new computer application, currently undergoing testing in the Australian building and construction industry. Its originality lies in the fact that ToolSHeD(TM) deploys argument trees to represent expert OHS reasoning, overcoming inherent limitations in rule-based expert systems.
机译:目的-本文的目的是描述一种创新的信息和决策支持工具(ToolSHeD(TM)),该工具旨在帮助建筑设计师将OHS风险管理纳入设计过程。描述了基于原型的基于Web的系统的底层结构以及知识获取和建模的过程。设计/方法/方法-ToolSHeD(TM)研发项目涉及捕获有关设计对职业健康与安全(OHS)风险的专家推理。使用一种非常适合在不确定性和自由决策的情况下对知识建模的创新方法来构造此知识。给出了示例“论据树”,代表专家小组用来评估屋顶维护工作中从高处掉下的风险的推理。与使用简单规则相比,讨论了使用此方法对OHS知识建模的优势。调查结果-ToolSHeD™原型开发和测试表明,论据树可以有效代表设计安全风险知识。实际的意义-描述了将论据树转换为基于Web的决策支持工具,并讨论了该工具在为建筑设计师(建筑师和工程师)提供简便且廉价的专业OHS知识访问方面的潜在影响。原创性/价值-本文描述了一种新的计算机应用程序,目前正在澳大利亚建筑业中进行测试。它的独创性在于ToolSHeD(TM)部署参数树来表示专家OHS推理,从而克服了基于规则的专家系统中的固有限制。

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