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Optimal profit-maximizing system design data envelopment analysis models

机译:最优利润最大化系统设计数据包络分析模型

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This research introduces a new type of data envelopment analysis (DEA) model termed the optimal system design (OSD) DEA model. Conventional DEA models evaluate DMUs' performances given their known input and output data. The OSD DEA models take this one step further. They optimally design a DMU's resource allocation in terms of profit maximization given the DMU's total available budget. The need to design optimal systems is quite common and is sometimes necessary in practice. In actual fact, this study demonstrates that through the OSD DEA models, we can provide DMUs with more information than optimal portfolios of resources such as optimal budgets and budget congestion, i.e., the more the budget is consumed, the less the maximal profit. The proposed OSD DEA models are linear programs, and thus can be solved by the standard LP solvers to obtain DMUs' optimal designs. However, to derive the DMUs' corresponding optimal budgets, and to verify if the DMUs provide evidence of budget congestion, we need to modify the solvers, which may not be trivial. Therefore, this study exploits the special structures of the models to develop a simple solution method that can directly not only derive both a DMU's optimal design and optimal budget, but can also check for the existence of budget congestion.
机译:这项研究引入了一种新型的数据包络分析(DEA)模型,称为最佳系统设计(OSD)DEA模型。常规DEA模型会根据已知的输入和输出数据来评估DMU的性能。 OSD DEA模型进一步迈出了这一步。给定DMU的总可用预算,他们根据利润最大化来优化设计DMU的资源分配。设计最佳系统的需求非常普遍,有时在实践中是必要的。实际上,这项研究表明,通过OSD DEA模型,我们可以为DMU提供比最佳预算和预算拥堵等最佳资源组合更多的信息,即预算消耗的越多,最大利润就越少。提出的OSD DEA模型是线性程序,因此可以通过标准LP解算器进行求解,以获得DMU的最佳设计。但是,要导出DMU的相应最佳预算,并验证DMU是否提供预算拥挤的证据,我们需要修改求解器,这可能并非易事。因此,本研究利用模型的特殊结构来开发一种简单的求解方法,该方法不仅可以直接导出DMU的最优设计和最优预算,还可以检查是否存在预算拥塞。

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