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Evaluation of frequency response of variable speed wind farms for reducing stability problems in weak grids

机译:评估变速风电场的频率响应以减少弱电网中的稳定性问题

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Maintaining the frequency within certain limits in a power system is a basic operational requirement as many loads may be very sensitive to frequency deviations. Increasing wind penetration in the power grid may lead to stability problems in isolated systems, or systems with weak interconnections with surrounding areas. Modern wind farms are based on variable speed wind turbines where the rotor speed and the electrical frequency are not coupled, thus, these farms do not add inertia to the system. At certain levels of wind penetration, the system inertia may become critically small, and the system may get unstable. In this work, some frequency response capabilities are incorporated into a wind farm. A validated wind model, developed by the authors, is used to obtain the wind series which is used for the simulations. Typical models of conventional generation power plants are used to fulfill the system operation requirements.
机译:将频率保持在电力系统的特定限制内是一项基本的操作要求,因为许多负载可能对频率偏差非常敏感。电网中风的渗透增加可能导致隔离系统或与周围区域的互连较弱的系统出现稳定性问题。现代风电场基于变速风轮机,其中转子速度和电频率未耦合,因此,这些风电场不会给系统增加惯性。在一定水平的风渗透下,系统惯性可能会变得非常小,并且系统可能会变得不稳定。在这项工作中,将某些频率响应功能整合到了风电场中。由作者开发的经过验证的风模型用于获得用于模拟的风序列。传统发电站的典型模型用于满足系统运行要求。

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