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Research on the reactive power control of wind turbines and dynamic reactive compensation equipment in high-voltage trip-off accident

机译:高压休闲事故中风力涡轮机和动态无功补偿设备的无功功率控制研究

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摘要

This paper proposed an explanation on a special phenomenon of voltage change during a large-scale trip-off accident of wind turbine generators (WTGs), which occurred in North China on May 14, 2012. In this accident, the local voltage rose slowly from 209kV to 242kV in 5 seconds after a small-capacity capacitor was switched on. As a result, hundreds of WTGs tripped off due to high voltage. The slow rising process of voltage in this accident is remarkably different from the common feature of voltage change under capacitor switching disturbances. Firstly, the main process of this high voltage trip-off accident is analysed, and the correlation between the change of active power/reactive power and the rise in voltage is discussed. It can be drawn that the voltage rising process was mainly because of the change of reactive power. Secondly, a model of wind-integrated power system is built in DIgSILENT/ PowerFactory. The impact of reactive power control mode of doubly fed induction generators (DFIGs) and static var generators (SVGs) on the voltage change are simulated. The simulation results indicate that both SVGs and DFIGs in constant reactive power control mode can lead to a slow rise in voltage. Furthermore, it is demonstrated that the rise rate of voltage depends on the dynamic response time of WTGs and dynamic reactive compensation equipment. In consideration of the low operation ratio of dynamic reactive compensation equipment at that time, the main reason of this high-voltage trip-off accident is WTGs worked in constant power control mode.
机译:本文提出了一种关于风力涡轮发电机(WTGS)大规模休闲事故期间电压变化特殊现象的解释,在2012年5月14日在华北地区发生。在这次事故中,局部电压慢慢地升起开启小容量电容后5秒内的209kV至242kV。结果,由于高电压,数百个WTGS跳闸。该事故中电压的缓慢上升过程与电容器切换干扰下的电压变化的共同特征显着不同。首先,分析了该高压休闲事故的主要过程,并讨论了有源电力/无功功率的变化与电压升高之间的相关性。可以绘制电压上升过程主要是因为反应力的变化。其次,在DigSilent / PowerFactory中建立了风集电电源系统的模型。模拟了双馈电流发电机(DFIG)和静态Var发生器(SVG)对电压变化的影响的影响。仿真结果表明,恒无功功率控制模式下的SVG和DFIG都可以导致电压缓慢上升。此外,证明电压的上升速率取决于WTGS和动态无功补偿设备的动态响应时间。考虑到当时动态无功补偿设备的低操作率,该高压休闲事故的主要原因是WTG在恒定功率控制模式下工作。

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