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A new method based on state-estimation technique to enhance low-voltage ride-through capability of doubly-fed induction generator wind turbines

机译:基于状态估计技术的双馈感应式风力发电机低压穿越能力增强新方法

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摘要

Among different forms of wind energy technologies, doubly fed induction generator (DFIG) has been one of the most growing one during recent years. According to the updated grid codes, wind energy resources are needed to stay connected to the network during and after faults. To improve zero or low-voltage ride through (LVRT) capability of DFIG, a control approach is proposed in the paper. The input signals of the proposed control approach are obtained by using state estimation technique. Since the dynamic behavior of the rotating speed of the stator flux can be considered in this method, it can minimize transient rotor current during and after clearing fault. Furthermore, the employment of state estimation method can minimize the effect of probable noise level in metering devices which is another advantage of this method. Simulation studies are done in a numerical case study to confirm the advantages of this method. (C) 2017 Published by Elsevier Ltd.
机译:在不同形式的风能技术中,双馈感应发电机(DFIG)是近年来发展最快的一种。根据更新的电网规范,需要在故障期间和之后保持风能资源与网络的连接。为了提高DFIG的零电压穿越或低压穿越(LVRT)能力,本文提出了一种控制方法。所提出的控制方法的输入信号是通过使用状态估计技术获得的。由于在此方法中可以考虑定子磁通转速的动态行为,因此可以在清除故障期间和之后将瞬态转子电流降至最低。此外,采用状态估计方法可以使计量设备中可能的噪声水平的影响最小化,这是该方法的另一个优点。在数值案例研究中进行了仿真研究,以确认该方法的优势。 (C)2017由Elsevier Ltd.发布

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