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Climate Effects in Data Envelopment Analysis for Residential Energy Performance Benchmarking: An Empirical Case Validation

机译:住宅能源绩效基准数据包络分析中的气候影响:经验案例验证

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Reinforced fault diagnosis to discover inefficiency sources on energy performance of residential systems is critical for taking targeted retrofitting measures to enhance the effectiveness of energy upgrading investments. Data-driven energy benchmarking through nonparametric data envelopment analysis (DEA) has been classically adopted to locate malfunctions of energy systems with its unique capability of isolating the effects of diverse factors to differentiate overall efficiency, scale efficiency, and management efficiency. Nevertheless, extant works tend to subjectively process climate effects which could result in errors during DEA. This paper provides an empirical case to examine the reliability of two candidate methods on handling climate factors in residential energy efficiency evaluation, including the normalization-based and the weighting-based approaches. By investigating the performance of 70 single-family homes within a 3-year dynamic context, the improved robustness of normalization-based DEA approach is observed with statistical testing. It shows that the overall relative low energy efficiency is mainly due to poor management. This research intends to benefit retrofitting managers to make solid decisions.
机译:加强故障诊断以发现住宅系统能源效率的低效率来源对于采取针对性的改造措施以提高能源升级投资的有效性至关重要。通过非参数数据包络分析(DEA)进行数据驱动的能源基准测试已被经典地用来定位能源系统的故障,其独特的能力可以隔离各种因素的影响,从而区分整体效率,规模效率和管理效率。尽管如此,现存的工作倾向于主观地处理气候影响,这可能会导致DEA期间的错误。本文提供了一个经验案例,以检验两种候选方法在处理住宅能源效率评估中处理气候因素的可靠性,包括基于归一化方法和基于加权的方法。通过调查3年动态情况下的70个单户住宅的性能,通过统计测试观察到了基于归一化DEA方法的改进的稳健性。结果表明,总体上相对较低的能源效率主要是由于管理不善所致。这项研究旨在使改造经理做出可靠的决策。

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