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Reactive power management of a wind farm to prevent voltage collapse of an electric power system

机译:风电场的无功功率管理,以防止电力系统的电压崩溃

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摘要

Nowadays, the large penetration of wind power generation poses new challenges for dynamic voltage stability analysis of an electric power system. The practical importance of dynamic voltage stability analysis is to help in designing and selecting counter-measures in order to avoid voltage collapse and enhance system stability. The impact of wind integration on reactive reserve requirements is a current area of interest for renewable integration studies and power system operators. In this paper is studied a new wind power plant model with reactive power management. The active power and the frequency management are taken into account too. The developed model can be used to represent, in a simplified way, an entire wind farm in order to simulate the dynamic voltage stability of the system, whatever the technology involved in the wind turbine. The system is completely modelled by a single dynamic converter model with appropriate control loops intended to reproduce the overall response of a wind farm for different grid events, such as faults or voltage and reactive power management at the point of common coupling. © 2015 IEEE.
机译:如今,风力发电的广泛普及为电力系统的动态电压稳定性分析提出了新的挑战。动态电压稳定性分析的实际重要性是帮助设计和选择对策,以避免电压崩溃并增强系统稳定性。风电集成对无功储备要求的影响是可再生能源集成研究和电力系统运营商当前关注的领域。本文研究了一种具有无功功率管理的新型风电厂模型。也要考虑有功功率和频率管理。所开发的模型可用于简化表示整个风力发电场,以模拟系统的动态电压稳定性,无论风力涡轮机所涉及的技术如何。该系统完全由单个动态转换器模型建模,带有适当的控制回路,旨在针对不同的电网事件(如故障或电压以及公共耦合点的无功功率管理)重现风电场的整体响应。 ©2015 IEEE。

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