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R program for estimation of group efficiency and finding its gradient. Stochastic data envelopment analysis with a perfect object approach

机译:R节目估算群效率并找到梯度。随机数据包络分析,具有完美的对象方法

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摘要

The data presented here are related to the research article “Energy-environmental efficiency and optimal restructuring of the global economy” (Vaninsky, 2018) [1]. This article describes how the world economy can be restructured to become more energy-environmental efficient, while still increasing its growth potential. It demonstrates how available energy-environmental and economic information may support policy-making decisions on the atmosphere preservation and climate change prevention. This Data article presents a computer program in R language together with examples of input and output files that serve as a means of implementation of the novel approach suggested in publication [1]. The computer program utilizes stochastic data envelopment analysis with a perfect object (SDAEA PO) to calculate the group efficiency of a collection of decision-making units (DMUs), the efficiency gradient, and the projected gradient. The projected gradient is computed in the case when the SDEA PO inputs and outputs are given as shares in total, to satisfy the constraints of adding up to a unit. By so doing, the program assesses the energy-environmental efficiency of the global economy and determines the ways of its maximum possible increase via locally optimal economic restructuring.
机译:这里提出的数据与“全球经济的能量环境效率和最佳重组”的研究制品有关(Vaninsky,2018)[1]。本文介绍了如何重组世界经济如何变得更加能源 - 环境效率,同时仍在提高其增长潜力。它展示了可用的能源环境和经济信息如何支持对大气保护和气候变化预防的政策决策。此数据文章将R语言中的计算机程序与输入和输出文件的示例一起呈现,其作为在出版物中提出的新方法的实现方式[1]。计算机程序利用具有完美对象(SDAEA PO)的随机数据包络分析来计算决策单元(DMUS),效率梯度和投影梯度集的集团效率。在SDEA PO输入和输出总共给出SDEA PO输入和输出时计算投影梯度,以满足添加单元的约束。通过这样做,该计划评估了全球经济的能源环境效率,并通过当地最佳的经济结构调整来确定其最大可能提高的方式。

著录项

  • 作者

    Alexander Vaninsky;

  • 作者单位
  • 年度 2018
  • 总页数
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类

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