International benchmarking of electricity transmission system operators

Per J. Agrell, P. Bogetoft
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引用次数: 23

Abstract

Electricity transmission system operators (TSO) in Europe are increasing subject to high-powered performance-based regulation, such as revenue-cap regimes. The determination of the parameters in such regimes is challenging for national regulatory authorities (NRA), since there is normally a single TSO operating in each jurisdiction. The solution for European regulators has been found in international regulatory benchmarking, organized in collaboration with the Council of European Energy Regulators (CEER) in 2008 and 2012 for 22 and 23 TSOs, respectively. The frontier study provides static cost efficiency estimates for each TSO, as well as dynamic results in terms of technological improvement rate and efficiency catch-up speed. In this paper, we provide the methodology for the benchmarking, using non-parametric DEA under weight restrictions, as well as an analysis of the static cost efficiency resutls for 2011. The overall cost efficiency is measured with a three-output model, explaining 91.2 % of variance, using a DEA model under non-decreasing returns to scale assumptions. The methodology is innovative in the sense that it combines endogenous outlier detection, technologically relevant output weight restrictions and a correction method for opening balances.
电力传输系统运营商的国际标杆
欧洲的电力传输系统运营商(TSO)越来越多地受到基于高性能的监管,例如收入上限制度。对于国家管理当局来说,确定这种制度的参数是一项挑战,因为在每个司法管辖区通常只有一个TSO。欧洲监管机构的解决方案已经在国际监管基准中找到,该基准是与欧洲能源监管机构理事会(CEER)合作组织的,分别于2008年和2012年针对22个和23个tso进行的。前沿研究提供了每个TSO的静态成本效率估算,以及技术改进率和效率追赶速度方面的动态结果。在本文中,我们提供了基准测试的方法,在权重限制下使用非参数DEA,以及对2011年静态成本效率结果的分析。总体成本效率是用一个三产出模型来衡量的,解释了91.2%的方差,使用非递减规模收益假设下的DEA模型。该方法的创新之处在于,它结合了内生异常值检测、技术相关的输出权重限制和期初余额的校正方法。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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