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Evaluation of a class of improved DTC method applied in DFIG for wind energy applications

机译:评估DFIG中用于风能应用的一类改进的DTC方法

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Large torque ripple and variable switching frequency are the two most notable drawbacks of conventional switching table based direct torque control (DTC) for doubly fed induction generator (DFIG). By using one active vector and one null vector during one control cycle, the torque ripple can be significantly reduced while achieving almost constant switching frequency. This paper propose a very simple but effective method to obtain the duty ratio of the active vector, which is able to reduce the complexity and improve the system robustness while reducing both torque and flux ripples. Furthermore, this paper points that by appropriately arranging the sequence of active vector and null vector, the switching frequency can be further reduced and the performance is only slightly affected. This fact is useful for high power wind energy applications with restricted switching frequency. The developed method is compared with one of the prior analytical methods based on torque ripple RMS minimization and exhibits lower rotor flux ripple and better harmonic performance of stator and rotor currents. The presented simulation results obtained from a 15 kW DFIG validates its effectiveness.
机译:大的转矩脉动和可变的开关频率是用于双馈感应发电机(DFIG)的基于常规切换表的直接转矩控制(DTC)的两个最明显的缺点。通过在一个控制周期内使用一个有效矢量和一个零矢量,可以在降低转矩脉动的同时实现几乎恒定的开关频率。本文提出了一种非常简单但有效的方法来获得有功矢量的占空比,该方法能够降低复杂度并提高系统的鲁棒性,同时减少转矩和磁通波动。此外,本文指出,通过适当安排有效矢量和无效矢量的顺序,可以进一步降低开关频率,并且对性能的影响很小。这一事实对于开关频率受限的高功率风能应用很有用。将该方法与基于转矩脉动RMS最小化的现有分析方法之一进行了比较,显示出较低的转子磁通波动和更好的定子和转子电流谐波性能。从15 kW DFIG获得的仿真结果验证了其有效性。

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