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Provision of frequency support by offshore wind farms connected via HVDC links

机译:通过HVDC链路连接的海上风电场提供频率支持

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The high penetration levels of wind power will obligate wind farms to contribute to the mitigation of frequency drops. Comprehensive case studies are presented to investigate the different methods of frequency support provision by wind power. The implemented test system is composed of an offshore wind farm connected to an external grid through a point-to-point HVDC link. Three different frequency support methods are compared; droop de-loading, battery storage banks and a mix between the two methods. Moreover, two different methods of sensing the frequency drop, at the point of common coupling, by the wind farm are examined. The impact of the HVDC is highlighted, especially its role to transmit the power surge provided by the wind farm. A modified de-loading controller is developed and integrated to all the wind turbines, according to the executed case studies. Results show that the proposed frequency support solutions have almost similar impact on the natural frequency response at the point of common coupling. The HVDC link does not worsen the frequency response, and the fluctuations in voltage levels at onshore and offshore buses are very minor. DIGsILENT PowerFactory is integrated as a simulation environment.
机译:风能的高渗透水平将迫使风电场为缓解频率下降做出贡献。提出了全面的案例研究,以研究通过风力发电提供频率支持的不同方法。实施的测试系统由一个海上风电场组成,该海上风电场通过点对点HVDC链路连接到外部电网。比较了三种不同的频率支持方法;下垂卸载,电池组存储和两种方法之间的混合。此外,研究了通过风电场在公共耦合点检测频率下降的两种不同方法。强调了高压直流输电的影响,尤其是其在传输风电场提供的电涌中的作用。根据执行的案例研究,开发了一种改进的卸载控制器并将其集成到所有风力涡轮机中。结果表明,提出的频率支持解决方案在公共耦合点对自然频率响应具有几乎相似的影响。 HVDC链路不会使频率响应变差,并且陆上和海上母线的电压水平波动很小。 DIGsILENT PowerFactory已集成为模拟环境。

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