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Analysis of the lightning transient response of the earthing system of large-scale ground-mounted PV plants

机译:大型地面光伏电站接地系统的雷电瞬态响应分析

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Large-scale ground-mounted PV plants, because of their large extend and localization, can be subject to lightning strikes. When a lightning strike falls into the area of the PV plant, the earthing system is affected by the current flowing in the lightning channel and potentially dangerous overvoltages may occur. Thus, the investigation on the performance of the grounding system is of paramount interest for the prediction of the potential threats either for people working in (or animals passing through) the solar farm area and for the installed electric and electronic equipments. The analysis of grounding systems is conducted in the frequency domain and an hybrid approach, based on circuit theory and Method of Moments, is adopted in order to fully account for resistive, inductive and capacitive couplings between elements of the ground system. The actual transient behavior is obtained by means of an Inverse Fourier Transform. A real case study grounding system configuration is considered and analyzed. We show that, even if the requirements of the international standards are fulfilled, and touch and step voltages are controlled with special care, overvoltages may cause failures of internal systems.
机译:大型地面安装的光伏电站,由于其较大的延伸范围和局部性,可能会遭受雷击。当雷击落入光伏电站区域时,接地系统会受到雷电通道中流动的电流的影响,并且可能会发生潜在的危险过电压。因此,对接地系统性能的研究对于预测对在太阳能农场地区工作的人(或穿过动物的人)以及已安装的电气和电子设备的潜在威胁至关重要。接地系统的分析是在频域中进行的,并且采用了一种基于电路理论和矩量法的混合方法,以充分考虑接地系统各元件之间的电阻,电感和电容耦合。实际的瞬态行为是通过逆傅立叶变换获得的。考虑并分析了一个实际案例研究接地系统的配置。我们证明,即使满足国际标准的要求,并且要特别小心地控制触摸电压和步进电压,过电压仍可能导致内部系统故障。

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