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Re-cutin control of wind turbines based on a combined dead band of time and wind speed

机译:基于时间和风速组合死区的风力涡轮机再行进控制

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During major metrological events, such as typhoons, a wind turbine will frequently cutout and re-cutin as wind speed fluctuates around the cutout speed. Repeated cutouts can undermine the reliability and the safety of a wind turbine. A dead band of wind speed between cutout and re-cutin speeds can be utilized to prevent frequent cutouts. Although a dead band of wind speed is helpful, it is not efficient because wind speed fluctuates and varies during the occurrence of a typhoon. This paper proposes a combined dead band of wind speed and time to control re-cutins of wind turbines and prevent repeated cutouts. Numerical simulations completed using onsite wind data from a potential wind Farm in Hong Kong indicate that the number of cutouts of a wind turbine has the potential to be reduced by 65% with the proposed approach.
机译:在诸如台风等重大气象事件中,风力涡轮机将频繁切出并重新切入,因为风速会在切出速度附近波动。重复切割会破坏风力涡轮机的可靠性和安全性。可以利用切口和重新切入速度之间的死区风速来防止频繁切入。尽管风速的死区是有帮助的,但它效率不高,因为在台风发生期间风速会发生波动和变化。本文提出了一个由风速和时间组成的死区,以控制风力发电机的再切角并防止重复切变。使用来自香港潜在风电场的现场风数据完成的数值模拟表明,采用建议的方法,风力涡轮机的切口数量有可能减少65%。

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