UPFC改进了风能转换系统的动态性能

M. Ferdosian, H. Abdi, A. Bazaei
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引用次数: 25

摘要

对风力发电能力的需求不断增长。这种情况迫使修订电网代码要求,以便在电网故障期间保持连接,即在故障期间骑马,并有助于在故障状态下保持系统稳定性。在典型的故障情况下,共联轴点电压立即降到80%以下,感应发电机转子转速变得不稳定。本文采用统一潮流控制器(UPFC)来改善风能转换系统(WECS)的低压穿越(LVRT),并抑制异步发电机在故障条件下的转子转速振荡。通过将UPFC控制为虚拟电感器,我们的目标是增加风能转换系统(WECS)终端的电压,从而减轻故障期间不稳定的电转矩和功率。WECS被认为是一个固定速度的系统,配备了一个鼠笼式感应发电机。仿真结果表明,UPFC可以提高wcs的LVRT和转子稳定性。
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Improved dynamic performance of wind energy conversion system by UPFC
There is a continuously growing demand for wind power generation capacity. This situation forces the revision of the grid codes requirements, to remain connected during grid faults, i.e., to ride through the faults, and contribute to system stability during fault condition. In a typical fault condition, the voltage at the Point of Common Coupling (PCC) drops below 80% immediately and the rotor speed of induction generators becomes unstable. In this paper, Unified Power Flow Controller (UPFC) is used to improve the low voltage ride- through (LVRT) of wind energy conversion system (WECS) and to damp the rotor speed oscillations of induction generator under fault conditions. By controlling the UPFC as a virtual inductor, we aims to increase the voltage at the terminals of the wind energy conversion system (WECS) and thereby mitigate the destabilizing electrical torque and power during the fault. The WECS is considered as a fixed-speed system, equipped with a squirrel-cage induction generator. The simulation results show that UPFC can improve the LVRT and rotor stability of the WECS.
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