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Adaptive voltage control strategy for variable-speed wind turbine connected to a weak network

机译:连接到弱电网的变速风力发电机的自适应电压控制策略

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Significant voltage fluctuations and power quality issues pose considerable constraints on the efficient integration of remotely located wind turbines into weak networks. Besides, 3p oscillations arising from the wind shear and tower shadow effects induce further voltage perturbations during continuous operation. This study investigates and analyses the repercussions raised by integrating a doubly-fed induction generator wind turbine into an ac network of different parameters and very weak conditions. An adaptive voltage control (AVC) strategy is proposed to retain voltage constancy and smoothness at the point of connection (POC) in order to maximise the wind power penetration into such networks. Intensive simulation case studies under different network topology and wind speed ranges reveal the effectiveness of the AVC scheme to effectively suppress the POC voltage variations particularly at very weak grid conditions during normal operation.
机译:明显的电压波动和电能质量问题严重限制了将远程风力涡轮机有效集成到薄弱网络中的工作。此外,由风切变和塔影效应引起的3p振荡会在连续运行期间引起进一步的电压扰动。这项研究调查和分析了将双馈感应发电机风力发电机集成到具有不同参数和非常弱条件的交流网络中所产生的影响。提出了一种自适应电压控制(AVC)策略,以在连接点(POC)上保持电压恒定性和平滑性,以使风能最大程度地渗透到此类网络中。在不同的网络拓扑和风速范围内进行的大量仿真案例研究表明,AVC方案有效抑制POC电压变化的有效性,尤其是在正常运行期间非常弱的电网条件下。

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