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A Stochastic-Process-Based Method for Assessing Frequency Regulation Ability of Power Systems with Wind Power Fluctuations

机译:基于随机过程的风功率波动电力系统调频能力评估方法

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The increasing penetration of wind power raises the problem of maintaining grid frequency stability. The purpose of this paper is to quantitatively describe the relationship between wind power fluctuations and grid frequency deviation. The fluctuation characteristics of wind power are analyzed in multi-time scales by wavelet methods. Then, a mathematical model representing wind power fluctuations is established. Using this model and the frequency response transfer function of power system, the frequency deviation can be obtained. A coefficient to measure the frequency regulation ability (FRA) of power system is defined as the ratio of wind power fluctuations to frequency deviations. Based on a series of calculation results of FRA in a two-area power system with large-scale wind power integration, a strategy for deploying appropriate thermal units participating in frequency regulation is proposed. In this strategy, the future frequency deviation of the system can be assessed, which helps operators to adjust the deployment of thermal units reasonably. Case studies show that this strategy can be widely applied in decreasing grid frequency deviation caused by wind power fluctuations.
机译:不断增加的风力发电带来了维持电网频率稳定性的问题。本文的目的是定量描述风电波动与电网频率偏差之间的关系。利用小波方法对风电的波动特性进行了多时间尺度的分析。然后,建立代表风能波动的数学模型。利用该模型和电力系统的频率响应传递函数,可以获得频率偏差。衡量电力系统的频率调节能力(FRA)的系数定义为风电波动与频率偏差之比。基于在具有大规模风电集成的两区域电力系统中的FRA的一系列计算结果,提出了一种用于部署参与频率调节的适当热单元的策略。通过这种策略,可以评估系统未来的频率偏差,这有助于操作员合理地调整热单元的部署。案例研究表明,该策略可广泛应用于降低风电波动引起的电网频率偏差。

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