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Grid Frequency Response of Different Sized Wind Turbines

机译:不同尺寸风力涡轮机的电网频率响应

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In many power systems like for instance the Continental European synchronous area of the ENTSO-E, wind power is replacing conventional (thermal) generation. Because wind power does in general not show inertial response and does not provide control power, the ability of the entire system to withstand power disturbances deteriorates. Under the event of a large generation outage in a system with large scale wind power, grid frequency limits could be exceeded which affect controllability, stability, and reliability of power system operation. Therefore, there is an incentive that wind turbines participate in balancing power. Previous research showed that control systems can enable participation of wind turbines in balancing, using their kinetic energy. It was also perceived that different sized wind turbines have different capacities to support the system. This research elaborates on previous work and shows that wind turbines equipped with adequate control systems can provide nearly identical grid frequency response as conventional power plants, independently of the size of the wind turbines. This work shows that system stability can be maintained even with large scale wind power integration. The grid frequency drop which immediately originates after a large generation outage will not worsen due to wind power, which consequently will not threaten the current power system operation.
机译:在许多电力系统中,例如Orteo-E的大陆欧洲同步区域,风电正在取代常规(热)生成。由于风力电力一般不显示惯性响应并且不提供控制能力,因此整个系统承受功效障碍的能力恶化。在具有大规模风电的系统中发生的大的出现中断的情况下,可以超出电网频率限制,影响电力系统操作的可控性,稳定性和可靠性。因此,风力涡轮机参与平衡功率的激励。以前的研究表明,控制系统可以使用其动能的动能来实现风力涡轮机的参与。还认为不同尺寸的风力涡轮机具有不同的能力来支持该系统。该研究详细说明了先前的工作,并表明配备有足够控制系统的风力涡轮机可以提供几乎相同的电网频率响应作为传统发电厂,独立于风力涡轮机的尺寸。这项工作表明,即使具有大规模的风力集成,也可以保持系统稳定性。由于风力电源而立即发起的网格频率下降不会恶化,因此不会威胁到当前的电力系统操作。

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