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Operational reliability assessment considering independency between wind power ramps and frequency sensitive loads

机译:考虑风力斜坡和频率敏感负荷之间的独立性的操作可靠性评估

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摘要

With the increasing wind power penetration, power system frequency is more vulnerable especially when gust wind periods. Frequency control is used to restore system frequency back to the rated value. But, during frequency control processes, demand of frequency sensitive load (FSL) is different from that of frequency-insensitive load and changes with the change in system frequency. It is necessary to consider load demand combined with dynamic frequency deviation. This paper proposed a new reliability evaluation method of generation systems based on blade-element theory and frequency control method. The blade-element theory is utilized to improve the evaluation accuracy of wind power output in the presence of wind power ramp events (WPREs). The frequency control considering dynamic demand of FSL is used to mimic frequency regulation processes and establish reliability evaluation model. Case studies are presented using wind data from a wind farm in Shanxi Providence, and the results suggest that reliability problems caused by FSL can’t be ignored in some cases.
机译:随着风电渗透的不断增加,电力系统频率尤其在阵风时期更容易受到攻击。频率控制用于将系统频率恢复到额定值。但是,在频率控制过程中,频率敏感负载(FSL)的需求与频率不敏感负载的需求与系统频率的变化的变化不同。有必要考虑负载需求与动态频率偏差相结合。本文提出了一种基于刀片元理论和频率控制方法的发电系统的新可靠性评估方法。刀片元素理论用于提高风力斜坡事件(WPRES)存在的风力输出的评价精度。考虑FSL动态需求的频率控制用于模拟频率调节过程并建立可靠性评估模型。使用来自山西普罗维登斯的风电场的风数据提出了案例研究,结果表明,在某些情况下,FSL造成的可靠性问题不能忽视。

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