雷电冲击特性和线路避雷器对150kv架空线路防雷性能的影响:ATP-EMTP计算方法

F. Murdiya, Febrizal Febrizal, Cecilia Stevany, Havel Alindo Sano, Firdaus Firdaus
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引用次数: 5

摘要

本模拟研究介绍了雷击对150 kV架空线路避雷器性能的影响。雷击有几个影响线路避雷器性能的参数,即雷击电荷和脉冲能量。模拟是通过向接地线注入峰值电压为10MV的直接冲击来尝试的。峰值电压根据波前时间(Tf)和闪电脉冲的持续时间(τ)而变化。为了从Tf和τ的各种变化计算LA的电流、电荷和脉冲能量,使用了梯形数值积分方法。对于每个相位,将比较由于直接撞击以及Tf和tau的各种变化而产生的电流和脉冲能量,从而可以从LA的性能中获得Tf和tau的影响,并且电流电荷和脉冲能量值仍然在IEEE C62.11标准的限制内。LA的安装和避雷器的位置影响了雷击时相线上闪电的峰值电压。线路避雷器使相线上的闪电峰值电压下降。通过在每个塔架中安装线路避雷器,它将比单独的线路避雷器更显著地降低相线上的雷电峰值电压。结果表明,线路避雷器必须安装至少六个塔架才能降低相线中的峰值电压。
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The effect of lightning impulse characteristics and line arrester to the lightning protection performance on 150 kV overhead lines: ATP-EMTP computational approach
This simulation study presents the effect of lightning strikes on the performance of arresters at 150 kV overhead lines. Lightning strikes have several parameters that affect the performance of line arresters (LA), namely lightning charge, and impulse energy. The simulation was attempted by injection of a direct strike to the ground wire with the peak voltage of 10 MV. The peak voltage was varied in terms of wavefront time (Tf) and the duration of lightning impulses (tau). In order to calculate current, charge and impulse energy of LA from various variations of Tf and tau, the trapezoidal numerical integration method is used. The current and impulse energy arising due to direct strikes and various variations of Tf and tau will be compared for each phase so that the influence of Tf and tau can be obtained from the performance of the LA and the current charge and impulse energy values are still within the limits of the IEEE C62.11 standard. The installation of LA and the position of arresters affected the peak voltage of lightning on the phase line when lightning struck it. The line arresters provide a drop in the peak voltage of lightning in phase lines. By installing line arresters in each tower, it will reduce the peak voltage of lightning on the phase line more significantly than the standalone line arrester. It is shown that the line arresters have to install at least six towers to reduce the peak voltage in the phase lines.
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