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Short-circuit calculations considering converter-controlled generation components

机译:考虑变流器控制的发电组件的短路计算

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Converter connected units are to a large extent replacing conventional synchronous machines. Most grid codes require reactive current injection from converter-controlled equipment in the power system during fault condition. At present, there is no standardized way of calculating the short circuit level in a system with a high penetration of power electronic converters. In this paper, three different methods (IEC60909, superposition and iterative) have been tested on a grid model of the West Danish power system, which has a high wind power penetration. The short-circuit currents at the short-circuit location calculated by means of these three methods show the results with a negligible difference based on the present-stage system model. However, this is because the converter-controlled wind turbines (WTs) at present constitute 7% of the installed capacity in the model. It is foreseen that the total contributed short-circuit current will be larger as the share of the converter-controlled WTs increases. The result achieved using the iterative method is more reasonable because the grid-voltage support from the converter-controlled WTs is represented in the iterative method but not in the IEC60909 or the superposition method.
机译:变频器连接的单元在很大程度上替代了传统的同步电机。大多数电网法规要求在故障情况下从电力系统中的变频器控制设备中注入无功电流。当前,在电力电子转换器的高普及率的系统中,还没有标准化的方法来计算短路水平。在本文中,已经在具有高风电渗透率的西丹麦电力系统的网格模型上测试了三种不同的方法(IEC60909,叠加和迭代)。通过这三种方法计算出的短路位置处的短路电流表明,基于当前系统模型的结果差异可忽略不计。但是,这是因为目前由变流器控制的风力涡轮机(WTs)构成模型中装机容量的7%。可以预见的是,随着转换器控制的WT份额的增加,总的短路电流将更大。使用迭代方法获得的结果更加合理,因为转换器控制的WT的电网电压支持以迭代方法表示,而不是以IEC60909或叠加方法表示。

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