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A Parametric Study on the Critical Lightning Currents Causing Flashover to the Overhead Lines of a ±533 kV HVDC Transmission System

机译:闪击至±533 kV高压直流输电系统架空线的临界雷电流的参数研究

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摘要

An ATP-EMTP simulation model for the evaluation of the lightning performance of the overhead lines of the ±533 kV Cahora-Bassa HVDC transmission system is presented. This model is used for the estimation of the minimum lightning currents causing flashover of the positive and negative pole insulators due to lightning strikes to shield wires (backflashover) and pole conductors (shielding failure flashover). A parametric analysis is conducted to investigate the influence on the critical lightning currents of several factors, namely, the span length, sag of pole conductors and shield wires, number of sub-conductors per bundle, tower ground resistance, soil resistivity and the pole operating voltage and polarity. It is shown that the minimum shielding failure flashover current of the HVDC lines is significantly affected by the polarity of the pole operating voltage only; the variation due to the other investigated parameters is found to be lower than about 10%. The minimum backflashover current, in addition to the polarity of the pole operating voltage, is influenced considerably by span length, lightning strike location along the span and tower ground resistance, thus also soil resistivity.
机译:提出了一种用于评估±533 kV Cahora-Bassa高压直流输电系统架空线防雷性能的ATP-EMTP仿真模型。该模型用于估算最小的雷电流,该最小雷电流是由于屏蔽线(回闪)和极导体(屏蔽故障闪络)的雷击而引起正极和负极绝缘子闪络的。进行了参数分析,以研究对关键雷电电流的影响的几个因素,即跨距长度,极导体和屏蔽线的下垂,每束子导体的数量,塔架接地电阻,土壤电阻率和极操作电压和极性。结果表明,高压直流输电线路的最小屏蔽故障闪络电流仅受极点工作电压的极性影响;反之亦然。发现由其他研究参数引起的变化小于约10%。除极操作电压的极性外,最小反向击穿电流还受跨距长度,沿跨距的雷击位置和塔架接地电阻的影响很大,因此也影响土壤电阻率。

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