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Application of multi-attribute utility theory for sustainable energy decisions in commercial buildings: A case study

机译:多属性效用理论在商业建筑可持续能源决策中的应用:案例研究

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Purpose - Despite substantial advances in technologies enhancing the energy efficiency of buildings, they remain the largest consumers of energy in the USA compared with other sectors. In addition, the current rating systems for sustainable buildings do not reflect all potential energy savings during the design, construction, and occupancy of the built environment. The purpose of this paper is to examine the application of multi-attribute utility theory (MAUT) as a framework for quantifying energy decisions made during the design phase of a building construction project. Design/methodology/approach - The MAUT method was applied to a case study, and the results were compared with subjective results from the decision makers. Analysis of the results suggested that MAUT is a decision analysis tool that could aid decision makers in communicating their decision criteria and expectations. Findings - Findings from this research suggest that using an analysis method provides the decision makers with a systematic way to include their concerns and preferences and specific requirements of the project along with the criteria for sustainable energy and the built environment at the same time. Using a multi-criteria, decision-making method provides the decision makers with quantitative information, which facilitates the comparison of alternatives. MAUT enabled the various stakeholders of the project to collaborate on the inputs of the problems and allowed the decision makers to communicate their priorities and expectations more effectively. Originality/value - The findings indicated that MAUT provides stakeholders with a quantitative and holistic approach to decision making in which they can track changes in parameters during the process. The implementation of MAUT as a decision analysis tool in designing construction projects ultimately could lead to better decision making for sustainable building designs.
机译:目的-尽管在提高建筑物能效的技术方面取得了重大进步,但与其他行业相比,它们仍然是美国最大的能源消费国。此外,当前的可持续建筑评级系统并未反映出在设计,建造和占用建筑环境期间所有潜在的节能量。本文的目的是研究多属性效用理论(MAUT)作为量化建筑施工项目设计阶段做出的能源决策的框架的应用。设计/方法/方法-将MAUT方法应用于案例研究,并将结果与​​决策者的主观结果进行比较。对结果的分析表明,MAUT是一种决策分析工具,可以帮助决策者传达他们的决策标准和期望。调查结果-研究结果表明,使用分析方法为决策者提供了一种系统的方式,可以同时考虑他们的关注和偏好以及项目的特定要求以及可持续能源和建筑环境的标准。决策方法使用多准则,可为决策者提供定量信息,从而有助于对备选方案进行比较。 MAUT使项目的各个利益相关者可以就问题的输入进行协作,并允许决策者更有效地传达其优先事项和期望。原创性/价值-研究结果表明,MAUT为利益相关者提供了一种定量,全面的决策方法,他们可以在此过程中跟踪参数的变化。在设计施工项目中将MAUT用作决策分析工具,最终可以为可持续建筑设计带来更好的决策。

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