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首页> 外文期刊>The Energy Journal >Disentangling Costs of Persistent and Transient Technical Inefficiency and Input Misallocation: The Case of Norwegian Electricity Distribution Firms
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Disentangling Costs of Persistent and Transient Technical Inefficiency and Input Misallocation: The Case of Norwegian Electricity Distribution Firms

机译:消除持久性和暂时性技术效率低下以及投入配置不当的成本:挪威配电公司的案例

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摘要

Numerous studies have focused on estimating technical inefficiency in electricity distribution firms. However, most of these studies did not distinguish between persistent and transient technical inefficiency. Furthermore, almost none of the studies estimated the cost of input misallocation arising from non-optimal use of inputs. One reason is that the cost function (input distance function) typically used in the literature does not allow for the separation of technical inefficiency and allocative inefficiency. In this study, we estimate both the persistent and transient components of technical inefficiency and input misallocation of Norwegian electricity distribution firms, using panel data from 2000 to 2016. Our modeling and estimation strategy is to use a system approach, consisting of the production function and the first-order conditions of cost minimization. Input misallocation for each pair of inputs is modeled via the first-order conditions of cost minimization. We also estimate the costs of each component of technical inefficiency and input misallocation by deriving the cost function for a multi-output separable production technology. Our modeling and estimation strategy handles endogeneity of inputs. Finally, we allow for inclusion of determinants of persistent and transient technical inefficiency. Our results show that the costs of input misallocation of Norwegian electricity distribution firms are non-negligible.
机译:许多研究集中在估计配电公司的技术效率低下。但是,这些研究大多数都没有区分持续性和暂时性技术效率低下。此外,几乎没有研究估计因非最佳使用投入而造成的投入分配不当的成本。原因之一是文献中通常使用的成本函数(输入距离函数)不允许技术效率低下和分配效率低下的分离。在这项研究中,我们使用2000年至2016年的面板数据估算了挪威配电公司的技术效率低下和输入错配的持续性和瞬态性。我们的建模和估算策略是使用系统方法,包括生产函数和成本最小化的一阶条件。通过成本最小化的一阶条件对每对输入的输入错配进行建模。我们还通过推导多输出可分离生产技术的成本函数,估算技术效率低下和输入分配不当的每个组件的成本。我们的建模和估计策略处理输入的内生性。最后,我们考虑了持续性和暂时性技术效率低下的决定因素。我们的结果表明,挪威配电公司投入错配的成本不可忽略。

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