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Cross-efficiency evaluation and decomposition with directional distance function in series and parallel systems

机译:串联和并行系统方向距离功能的跨效率评估和分解

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As an extension tool of data envelopment analysis (DEA), cross-efficiency evaluation has been widely applied in ranking decision making units (DMUs). Series and parallel are two basic network structures. Current crossefficiency evaluation in both the structures has been developed with oriented DEA models that minimize inputs while producing at least the given outputs. The extension proposed here is aimed at providing a nonoriented cross-efficiency evaluation based on measures accounting for input excesses and output shortfalls simultaneously. This paper extends the cross-efficiency evaluation in series and parallel structures for use with the directional distance function (DDF). In the proposed DDF cross-efficiency evaluation, the system crossefficiency score can be decomposed into a weighted average of process cross-efficiency scores, whether for the series or parallel system. The problem with the alternate optima for the multipliers is also addressed and models of avoiding zero multipliers are provided in this new context. Numerical examples from the literature and an empirical one illustrate the validity of the proposed network cross-efficiency evaluation and decomposition, and the superiority of the models in avoiding zero multipliers.
机译:作为数据包络分析(DEA)的扩展工具,交叉效率评估已广泛应用于排名决策单位(DMUS)。系列和并行是两个基本网络结构。两种结构中的当前克罗斯特化评估都是用面向DEA模型开发的,该模型最小化输入,同时产生至少给定的输出。此处提出的扩展旨在根据措施核算输入过度和产出缺陷的措施提供不值的跨效率评估。本文扩展了串联和并联结构的交叉效率评估,以与定向距离功能(DDF)一起使用。在所提出的DDF跨效率评估中,系统曲折得分可以分解成流程跨效率分数的加权平均值,无论是串联还是并行系统。还解决了乘法器的替代Optima的问题,并且在这个新上下文中提供了避免零乘数的模型。来自文献的数值示例和经验证书示出了所提出的网络交叉效率评估和分解的有效性,以及模型在避免零乘数方面的优越性。

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