Approach for evaluation of lightning current distribution on wind turbine with numerical model

J. Birkl, E. Shulzhenko, Johannes Kolb, Michael Rock
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Abstract

Wind turbines are increasingly becoming an important source of energy for many power systems worldwide. Reliable and safe operation of the turbines is becoming more and more important. Due to their height and exposed location wind turbines are defined as very exposed structures to lightning. A reliable lightning protection system (LPS) for wind turbines is therefore essential. Designing the overvoltage protection system of a wind turbine the lightning current distribution and overvoltages inside the turbine needs to be analyzed. For this purpose the real structure of a specific standard wind turbine is considered. Based on the geometry and material parameters an equivalent circuit model is developed in EMTP-ATP. Using this model, the current distribution and overvoltages can simply be calculated. In the following paper this model is used to investigate the voltage stresses occurring inside the turbine due to direct lightning strike into a rotor blade. Based on the simulation results different overvoltage concepts for the electrical and IT systems are analyzed including the investigation of the power electronic converter of a full converter wind turbine. Ultimately an overvoltage protection concept is suggested that reduces voltage stresses for the electrical and IT system as well as the power converter according to standard [1].
用数值模型评估风力机雷电流分布的方法
风力涡轮机正日益成为全球许多电力系统的重要能源来源。汽轮机的可靠、安全运行变得越来越重要。由于它们的高度和暴露的位置,风力涡轮机被定义为非常暴露于闪电的结构。因此,可靠的风力涡轮机防雷系统(LPS)是必不可少的。在设计风电机组过电压保护系统时,需要对雷电电流分布和风机内部过电压进行分析。为此,考虑了特定标准风力涡轮机的实际结构。基于几何参数和材料参数,建立了EMTP-ATP的等效电路模型。利用该模型,可以简单地计算出电流分布和过电压。在下面的文章中,该模型用于研究由于直接雷击到转子叶片而在涡轮内部发生的电压应力。在仿真结果的基础上,分析了电气系统和IT系统的不同过电压概念,并对全变流器风力发电机组的电力电子变流器进行了研究。最后,根据标准[1]提出了一种过压保护概念,以降低电气和IT系统以及功率转换器的电压应力。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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