Fault ride-through capability enhancement of DFIG-based wind turbine with supercapacitor energy storage

D. M. Yehia
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引用次数: 5

Abstract

High penetration of wind power into the power grids is subjected to a great limitation due to power fluctuations as well as fault ride-through (FRT) performance of wind turbines. Recently, supercapacitor energy storage devices are successfully used to mitigate the issue of power fluctuations. However, for increasing the effectiveness of using supercapacitors with wind turbine generators, it is proposed in this paper to use them for enhancing FRT capability. The considered wind turbine generator is the doubly fed induction generator (DFIG). The supercapacitor is connected at the dc link of the DFIG converters. Simulation studies are performed using PSCAD/EMTDC software. The performance of the proposed scheme is evaluated through the voltage profile, the stator current, and the active and reactive powers. Results verify the superior effect of supercapacitors in improving FRT capability and dynamic behavior of the DFIG-based wind turbine.
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采用超级电容储能技术提高dfig型风力发电机组的故障穿越能力
由于风力发电机组的功率波动和故障穿越(FRT)性能,风力发电在电网中的高渗透受到很大的限制。最近,超级电容器储能装置被成功地用于缓解功率波动问题。然而,为了提高风力发电机组使用超级电容器的有效性,本文提出将超级电容器用于增强风力发电机组的FRT能力。所考虑的风力发电机组是双馈感应发电机(DFIG)。超级电容连接在DFIG变换器的直流链路上。采用PSCAD/EMTDC软件进行仿真研究。通过电压分布、定子电流、有功功率和无功功率来评估该方案的性能。结果验证了超级电容器在提高dfig型风力机的FRT性能和动态性能方面的优越效果。
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