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The impact of wind farm aggregation techniques for analyzing power system dynamics

机译:风电场聚集技术对电力系统动态分析的影响

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The introduction and penetration of non-conventional renewable energy based generation technologies in South Africa and the world over has increased grid connection complexities. This has resulted in strict grid code requirements by utilities in order to ensure a reliable, safe and economically manageable grid operation. This justifies the need for adequate system models to represent overall system dynamics of grid connected renewable energy sources during normal and abnormal grid disturbances. Wind generation technology has become the world's largest growing energy source due to its non-emission of carbon gases, it is available in abundance and is reproducible. This research paper presents the different methods that can be used to aggregate a wind farm consisting of the doubly fed induction generator (DFIG) wind turbine for simulation sudies and predicting wind farm dynamic performance during normal and abnormal grid conditions. By comparing the aggregated wind farm models with the full wind farm model, this research paper confirms that the different aggregating techniques used in simulation studies provides identical results, hence confirming that aggregating techniques can be used to reduce computational complexities on the one hand and be able to predict the wind farm's influence on the system dynamic behavior on the other hand.
机译:非传统的基于可再生能源的发电技术在南非和世界范围内的引入和渗透,增加了电网连接的复杂性。这导致公用事业公司对网格代码有严格的要求,以确保可靠,安全和经济上可管理的网格运行。这证明需要适当的系统模型来表示正常和异常电网干扰期间并网可再生能源的总体系统动态。风力发电技术由于不排放碳气体,已成为世界上增长最快的能源,它可以提供大量且可重复使用。本研究论文提出了可用于聚集由双馈感应发电机(DFIG)风力涡轮机组成的风电场的不同方法,用于模拟功率并预测正常和异常电网条件下的风电场动态性能。通过将汇总的风电场模型与完整的风电场模型进行比较,该研究论文证实,模拟研究中使用的不同汇总技术可提供相同的结果,因此证实了汇总技术可以一方面降低计算复杂度,并且能够另一方面,预测风电场对系统动态行为的影响。

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