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Suitable method of overloading for fast primary frequency control from offshore wind power plants in multi-terminal DC grid

机译:多端直流电网中海上风力发电厂的快速过载控制的合适过载方法

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Increased penetration of offshore wind power plants (OWPPs) demands frequency control services from them. Overloading the wind turbine, for few seconds after the under frequency event, to utilize its kinetic energy seems promising option for fast primary frequency control. Two methods of overloading the wind turbine (WT), with and without considering the impact of WT dynamics and variation of WT output power during the overload, are proposed in the literature. In this paper, these two methods are applied for fast primary frequency control from OWPPs connected through multi-terminal DC grid considering the operation of the WT at below rated wind speed. Moreover, the impact of release of overload on the dynamics of the wind turbine, therefore on the associated AC and DC grids are studied in this paper. Finally, the suitable overloading method is proposed based on the simulation and experimental results. The time domain simulations for fast primary frequency control are performed on an OWPP connected through a 3-terminal DC grid using DIgSILENT PowerFactory. The experiments are performed on OWPP model integrated to a laboratory scale 3-terminal DC grid test set up. Based on the simulations and experimental results, overloading method which considers the variation of WT output power during the overload provides better performance during and after release of the overload.
机译:离岸风力发电厂(OWPP)的普及率不断提高,要求它们提供频率控制服务。在欠频事件发生几秒钟后,使风力涡轮机过载,以利用其动能来实现快速主频率控制似乎是有希望的选择。文献中提出了两种使风力涡轮机(WT)过载的方法,其中考虑和不考虑WT动力学的影响和在过载期间WT输出功率的变化。本文将这两种方法应用于通过多端子直流电网连接的OWPP进行快速主频率控制,考虑了WT在低于额定风速下的运行情况。此外,本文研究了过载释放对风力发电机动态的影响,因此对相关的交流和直流电网也有影响。最后,基于仿真和实验结果,提出了合适的过载方法。使用DIgSILENT PowerFactory在通过3端子DC电网连接的OWPP上执行快速主频率控制的时域仿真。实验是在OWPP模型上进行的,该模型已集成到实验室规模的3端子DC电网测试装置中。根据仿真和实验结果,考虑过载期间WT输出功率变化的过载方法在过载释放期间和释放之后具有更好的性能。

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