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首页> 外文期刊>Electric power systems research >Lightning performance of transmission lines: Assessing the quality of traditional methodologies to determine backflashover rate of transmission lines taking as reference results provided by an advanced approach
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Lightning performance of transmission lines: Assessing the quality of traditional methodologies to determine backflashover rate of transmission lines taking as reference results provided by an advanced approach

机译:传输线的闪电性能:评估传统方法的质量,以先进方法提供的参考结果为基础确定传输线的反闪率

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This paper presents a critical review of CIGRE and IEEE traditional methodologies for calculating the backflashover outage rate (BFOR) of transmission lines, considering their adopted simplifications. These methodologies, along with an advanced computational approach named HEM-DE, were applied to a real 138-kV line to determine its backflashover rate. The quality of the results produced by the methodology at each step of their calculation procedure was assessed and discussed, taking as reference the accurate results provided by the advanced approach, based on the application of the hybrid electromagnetic model (HEM) and disruptive effect model (DE). According to this assessment, in the 40-to-10-Omega range of tower footing grounding resistance, the CIGRE methodology overestimates outage rate of the line in relation to the reference values (98-21% larger in the 40-to-10-Omega range of tower footing grounding resistance). The IEEE methodologies underestimates the BFOR, yielding rates 47-23% lower in the same resistance range. (C) 2017 Elsevier B.V. All rights reserved.
机译:本文考虑了采用的简化方法,对CIGRE和IEEE传统方法进行了重要的回顾,以计算传输线的回闪故障率(BFOR)。这些方法与称为HEM-DE的高级计算方法一起应用于实际的138 ​​kV线路,以确定其反闪率。基于混合电磁模型(HEM)和干扰效应模型的应用,评估并讨论了该方法在其计算过程的每个步骤中产生的结果的质量,并以先进方法提供的准确结果为参考。 DE)。根据此评估,在塔架接地电阻为40至10Ω的范围内,CIGRE方法相对于参考值高估了线路的断电率(在40至10的情况下增大了98-21% Ω的铁塔基础接地电阻范围。 IEEE方法论低估了BFOR,在相同的电阻范围内,产率低47-23%。 (C)2017 Elsevier B.V.保留所有权利。

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