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High performance steady state modeling controlling algorithm for DFIG

机译:DFIG高性能稳态建模与控制算法

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The paper describes a novel steady state technique for high performance wind-driven DFIG. The analytical models are carried out in both of synchronously rotating frame and stationary reference frame. A detailed analysis of the overall performance of the DFIG operating at the steady state variable speed operation using both frames are investigated, compared and evaluated. Unlike other works, the model takes stator resistance, mechanical power, developed power and net generated power (in its ac and equivalent dc forms) into consideration. This relation maps the relationship between turbine, generator and grid (or load in stand-alone systems) sizes. Power distribution to (or from) the grid is presented using three different analytical models to evaluate the proposed strategy. Further active and reactive power control has been achieved via the load angle control. The developed control system offers two control strategies of rotor voltage vector control and rotor current vector control via the rotor PWM voltage source converter.
机译:本文介绍了一种用于高性能风力驱动的DFIG的新型稳态技术。分析模型在同步旋转帧和静止参考框架中进行。研究了在使用两个帧的稳态变速操作下操作的DFIG的整体性能的详细分析,并进行了评估。与其他作品不同,模型考虑到定子电阻,机械电源,开发的功率和净产生的功率(其AC和等效DC形式)。该关系地图涡轮机,发电机和网格(或单独装载)尺寸之间的关系。使用三种不同的分析模型来呈现网格(或来自)电网的配电,以评估所提出的策略。通过负载角度控制实现了进一步的主动和无功功率控制。开发的控制系统通过转子PWM电压源转换器提供了转子电压矢量控制和转子电流矢量控制的两个控制策略。

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