不同雷击下互耦对典型风力机雷电瞬态电压电流的影响

Tserensambuu Chinges, Qingmin Li, Jiyao Zhao
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引用次数: 0

摘要

本文介绍了一种利用PSCAD/EMTDC软件计算风力发电机防雷系统雷电电磁暂态的方法。考虑到叶片接地线和风力机塔的垂直线和水平线的相互耦合,利用PSCAD中提供的代码采用电路方法建模。对比分析了考虑和不考虑电感/电容耦合的两种模型,用于估计两种不同雷击下叶片、塔顶和塔底的瞬态过电压。分析了采用等电位接地电缆的风电机组接地系统配置,确定了不同接地特性下通过低压避雷器的放电电流。仿真结果表明,相互耦合对塔顶/机舱过电压有显著影响。此外,发现双峰雷电电流比标准2.6/50 $\mu$s雷电产生更强的负振荡。根据模型的使用,其精度足以计算雷击过电压和通过避雷器的电流。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
The Significance of Mutual Coupling on the Lightning Transient Voltage and Current of Typical Wind Turbine under Different Lightning Strokes
This paper described a computation of lightning electromagnetic transient of the wind turbine lightning protection system using PSCAD/EMTDC software. Blade grounding wire and wind turbine tower were modelled by circuit approach considering their mutual coupling of vertical and horizontal wires using the codes available in PSCAD. The comparison analysis has been performed between models with and without accounting the inductive/capacitive coupling for estimating transient overvoltage at the blade, tower top, and tower base under two distinct lightning current strokes. Also, wind turbine grounding system configuration with an equipotential grounding cable is analyzed to determine discharge current through the low voltage surge arrester under different grounding characteristics. The simulation results show that the mutual coupling significantly affects the tower top/nacelle overvoltage. Moreover, it was found that double peaked lightning current produces strong negative oscillations than standard 2.6/50 $\mu$s lightning. Depending on the uses of the model, the accuracy is enough to compute lightning overvoltage and currents through surge arresters.
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