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Overvoltage Limitation Method of an Offshore Wind Farm With DC Series-Parallel Collection Grid

机译:直流串联-并网式海上风电场的过电压限制方法

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This paper describes the characteristics of a series parallel wind farm (SPWF) topology and investigates the control strategy to ensure its safe operation. The SPWF was found to have advantages over other pure dc wind farm architectures in terms of lower construction cost and lower power losses in the collection system. However, unbalanced power productions among the wind turbines cause the variations of their output voltages, which may endanger the safe operation of the entire wind farm. This paper proposes a global control strategy that prevents wind turbines from operating above their overvoltage capabilities. With an active participation of the onshore converter, the proposed strategy allows maximum power point tracking of the wind turbines. The practical limitations of this strategy are discussed and improvements are given. The feasibility of the proposed method is validated in a simulation of 300 MW wind farm developed in EMTP-RV.
机译:本文描述了串联风电场(SPWF)拓扑的特性,并研究了确保其安全运行的控制策略。发现SPWF在降低建设成本和降低收集系统的功率损耗方面比其他纯直流风力发电场架构具有优势。但是,风力涡轮机之间的电力生产不平衡会导致其输出电压变化,从而可能危及整个风力发电场的安全运行。本文提出了一种全局控制策略,该策略可防止风力涡轮机在其过压能力以上运行。在陆上变流器的积极参与下,提出的策略允许跟踪风力涡轮机的最大功率点。讨论了该策略的实际局限性并给出了改进。在EMTP-RV中开发的300 MW风电场仿真中验证了该方法的可行性。

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