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Coordinate control of active and reactive power in wind integration area to prevent cascading trip fault

机译:风力集成区的有功和无功功率的协调控制,以防止级联跳闸故障

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Large-scale wind power centralized integration into power grid via long transmission lines is the major way to use wind energy in China. However, cascading trip faults in wind power centralized integration area brings a great new challenge for secure operation of power grid. Due to the complexity of SCOPF, this paper proposes a N-1 sensitivity based method to coordinately control active and reactive power in wind power integration area to prevent cascading trip fault. The control center aims to minimize wind power curtailment and guarantees both normal and secure operation. This control strategy also suppresses wind farms' voltage fluctuation and minimizes the regulation of reactive power. A real system in Northern China is studied to verify the effectiveness of the proposed method in this work, and an excellent performance has been observed by Monte Carlo method.
机译:通过长输电线路将风电大规模集中集成到电网中是中国使用风能的主要方式。然而,风电集中集成区的级联跳闸故障给电网的安全运行带来了巨大的新挑战。鉴于SCOPF的复杂性,本文提出了一种基于N-1灵敏度的方法来协调控制风电集成区的有功和无功,以防止级联跳闸故障。控制中心旨在最大程度地减少风力发电,并确保正常和安全运行。这种控制策略还可以抑制风电场的电压波动,并最大程度地减少无功功率的调节。研究了在中国北方的真实系统,以验证所提出方法在这项工作中的有效性,并且通过蒙特卡洛方法观察到了优异的性能。

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