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Pareto–Koopmans efficiency in two‐stage network data envelopment analysis in the presence of undesirable intermediate products and nondiscretionary factors

机译:在存在不良中间产物和非酌定因素的情况下,两阶段网络数据包络分析中的帕累托-库普曼斯效率

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摘要

Many studies have recently been conducted on the evaluation of system performance with a two-stage network structure in data envelopment analysis (DEA) literature. One of the topics of interest to researchers has been the mitigation of undesirable products or nondiscretionary factors into their corresponding possible production set (PPS) and their impact on overall efficiency calculations. Determination of decision-making units (DMUs) with Pareto-Koopmans efficiency status is decisive in identifying benchmark units. The calculated overall efficiency status is compromised when both undesirable products and nondiscretionary factors are present. This work utilizes an axiomatic approach. A novel PPS for a two-stage network in presence of undesirable intermediate products and nondiscretionary exogenous inputs is introduced. Based on this PPS and by focusing on the principle of mathematical dominance, new models for evaluating overall and divisional efficiencies are presented. In addition, by proposing a two-step network DEA approach, a necessary and sufficient condition for detection of DMUs with Pareto-Koopmans efficiency status is provided. And by introducing a two-step algorithm, a novel technique for determining overall efficiency conditions is produced. Finally, the proposed technology is applied to a practical example, and outcomes are discussed.
机译:最近在数据包络分析(DEA)文献中进行了两级网络结构的系统性能评估研究。研究人员感兴趣的主题之一是将不良产品或非随意性因素减缓到其相应的可能生产集(PPS)中,以及它们对总体效率计算的影响。确定帕累托-考夫曼效率状态的决策单位(DMU)对于确定基准单位至关重要。当同时出现不良产品和非必要因素时,计算出的总体效率状态将受到影响。这项工作利用公理方法。介绍了一种适用于两阶段网络的新型PPS,该网络具有不想要的中间产品和非随意的外源输入。基于此PPS,并着重于数学优势原理,提出了用于评估总体效率和除法效率的新模型。另外,通过提出两步网络DEA方法,为检测具有Pareto-Koopmans效率状态的DMU提供了必要和充分的条件。并且通过引入两步算法,产生了一种用于确定总体效率条件的新颖技术。最后,将所提出的技术应用于实际示例,并讨论了结果。

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