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Calculation of Lightning-Induced Voltages on Overhead Distribution Lines Including Insulation Breakdown

机译:包括绝缘击穿在内的架空配电线路的雷电感应电压计算

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摘要

This paper investigates the influence of considering actual insulation volt-time curves both in the calculation of lightning-induced voltages and in the estimation of the number of flashovers an overhead wire may experience per year due to nearby lightning strokes. The flashover mechanism is modeled according with the integration method, which is used as a reference for comparisons with the simplified 1.5 CFO flashover criterion traditionally used in the estimation of the lightning performance of overhead distribution lines. Sensitivity analysis show the dependence of flashovers on the shape and front time of the assumed channel-base current. The obtained results suggest that the simplified 1.5 CFO flashover criterion is likely to underestimate the number of flashovers an overhead line may experience per year due to nearby lightning strokes. This result is confirmed by statistical analyses considering a Monte Carlo-based approach. It is also shown that more realistic flashover rate estimates can be obtained in the statistical analysis of lightning-induced voltages provided a reduced threshold level (1.2 CFO in the particular case evaluated in this paper) is considered instead of the 1.5 CFO level traditionally used in this type of study.
机译:本文研究了考虑实际绝缘电压-时间曲线在计算雷电感应电压和估算架空电线每年因附近雷击而可能发生的闪络次数方面的影响。闪络机制是根据集成方法建模的,该方法可作为与传统上用于估算架空配电线路闪电性能的简化的1.5 CFO闪络标准进行比较的参考。灵敏度分析表明,闪络与假定的基于沟道的电流的形状和前沿时间有关。获得的结果表明,简化的1.5 CFO闪络标准可能会低估由于附近的雷击而每年架空线可能经历的闪络数。考虑基于蒙特卡洛方法的统计分析证实了这一结果。还表明,如果考虑降低阈值水平(本文评估的特殊情况下为1.2 CFO)而不是传统上使用的1.5 CFO水平,则在雷电感应电压的统计分析中可以获得更现实的闪络速率估计。这种研究。

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