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Establishing the DEA energy management system for individual departments within universities

机译:为大学内的各个部门建立DEA能源管理系统

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Purpose - The purpose of this study is to present the theoretical framework of the "data envelopment analysis (DEA) Energy Management System (DEMS)" proposed to assist individual departments occupying the same buildings on university campus in assessing the energy efficiencies of their facilities, as well as to demonstrate the implementation results of the DEMS applied in the case of the Department of Architecture of NTUST in Taiwan. Design/methodology/approach - The proposed DEMS considers each "space" within a department in a given "time" (such as a month) as a decision-making unit (DMU). Then, regression analysis is performed on data of "existing environment", "occupancy" factors and "actual energy consumption EUI (energy usage intensity)" related variables. The regression equation derived is then used to calculate the "predicted EUI" for all DMUs. The "actual EUI" is further considered as the input data and the "predicted EUI" as the output data of the DEMS, on which data envelopment analysis is conducted to produce three types of energy-efficiency scores (overall efficiency, scale efficiency, pure technical efficiency) to indicate the energy efficiencies of all DMUs. Findings - The DEMS was developed and further implemented in the Department of Architecture of NTUST in Taiwan to illustrate how it can be used to assist individual departments within universities in assessing the energy management effectiveness of their spaces. Research limitations/implications - The accuracy of the energy-efficiency scores depends greatly on the accuracy of the predicted EUIs of spaces, and, therefore, it is critical to identify a better regression model with higher predictability (R~2). The relatively low actual EUIs of certain student spaces during winter and summer breaks may greatly affect the resulting energy-efficiency scores. Practical implications - The DEMS allows facility managers to assess and compare the energy-efficiency scores "among different spaces", to further review the energy efficiency of a space "over time" and to recognize the benchmark cases and pursue actions for energy improvement. Originality/value - This study explores the research concepts of "space type" and "internal benchmark" with an analytical method "data envelopment analysis" to assess the energy efficiency of an individual department which may only occupy certain floors of a building.
机译:目的-本研究的目的是提出“数据包络分析(DEA)能源管理系统(DEMS)”的理论框架,该理论框架旨在协助占用大学校园内同一建筑物的各个部门评估其设施的能源效率,并演示了在台湾NTUST建筑系应用DEMS的实施结果。设计/方法/方法-提议的DEMS将部门中给定“时间”(例如一个月)中的每个“空间”视为决策单位(DMU)。然后,对“现有环境”,“占用率”因素和“实际能耗EUI(能耗强度)”相关变量的数据进行回归分析。然后使用导出的回归方程式来计算所有DMU的“预测EUI”。进一步将“实际EUI”视为DEMS的输入数据,将“预测EUI”视为DEMS的输出数据,并在其上进行数据包络分析以产生三种类型的能效得分(总体效率,规模效率,纯净性)。技术效率)以指示所有DMU的能源效率。调查结果-DEMS是在台湾NTUST建筑学系开发并进一步实施的,以说明如何将其用于协助大学中的各个部门评估其空间的能源管理有效性。研究的局限性/意义-能源效率评分的准确性很大程度上取决于所预测的空间EUI的准确性,因此,确定具有更高可预测性(R〜2)的更好的回归模型至关重要。某些学生空间在冬季和夏季休息期间的相对较低的实际EUI可能会极大地影响由此产生的能效得分。实际意义-DEMS使设施管理者可以评估和比较“不同空间”的能效得分,“随着时间的推移”进一步审查空间的能效,并识别基准案例并采取改善能源的行动。独创性/价值-本研究使用“数据包络分析”分析方法探讨“空间类型”和“内部基准”的研究概念,以评估可能仅占据建筑物某些楼层的各个部门的能源效率。

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