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Flexible Grid-connection Technique and Novel Maximum Wind Power Tracking Algorithm for Doubly-Fed Wind Power Generator

机译:双馈风电发电机柔性电网连接技术和新型风电跟踪算法

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The connection between the Doubly-fed Wind Power Generators (WPGs) and the grid affects the security of the grid and generator. The Maximum Wind Power Tracking (MWPT) affects the efficiency of the generators connected to the grid. This paper deals with two problems above. Based on a no-load model of doubly-fed induction generator (DFIG), and by applying a vector control technique called stator flux orientation vector control technique (SFOVCT), a grid-connection control strategy for doubly-fed WPGs is developed. According to the Wind Turbines (WTs) principles and DFIG power characteristics, the paper investigates the MWPT principles based on generator power control, and then introduces an algorithm for active power command of the DFIG. Based on SFOVCT and general-purpose model for DFIG, this novel algorithm enables decoupled output power of DFIG, and then an integrated control strategy for MWPT are developed. The grid-connection and the MWPT for the DFIG are presented for a 15-kw laboratory set up, and the experiment results verified the validity and feasibility of the theoretic analysis, as well as the control strategy.
机译:双馈风力发电机(WPGs)和电网之间的连接影响电网和发电机的安全性。最大风力跟踪(MWPT)影响连接到电网发电机的效率。本文从以上两个问题的交易。基于双馈感应发电机(DFIG)的无负载模型,并通过应用称为定子磁场定向矢量控制技术(SFOVCT)的矢量控制技术,对于双馈WPGs网格连接控制策略的发展。根据风力涡轮机(WTS)的原则和DFIG功率特性,本文研究了基于发电机功率控制的原则MWPT,然后引入了对DFIG的有功功率命令的算法。基于SFOVCT和通用模型DFIG,这种新颖的算法使得DFIG的去耦的输出功率,然后MWPT集成控制策略的开发。对于双馈电网连接和MWPT都提出了一个15千瓦的实验室设置,实验结果证明了有效性和理论分析的可行性,以及控制策略。

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