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Comparison between modifications of SFOC and DPC in control of grid-connected Doubly Fed Induction Generator under Unbalanced Voltage Dip

机译:SFOC和DPC在不平衡电压跌落下并网双馈感应发电机控制中的比较

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This paper presents both the previously and newly modified Stator Flux Oriented Control (SFOC) and Direct Power Control (DPC) structures for Doubly Fed Induction Generator (DFIG) in wind turbines to improve responses of active power, reactive power and generator's torque during the grid voltage unbalance. In the newly proposed SFOC-based scheme, which emphasizes on improvement of generator's torque performance, PI controllers with anti-windup, Notch filters and the Sequence Component Controller (SCC) are utilized. The other control techniques use single or multiple applications of PI controller with anti-windup, hybrid PI-Fuzzy controller with anti-windup and Notch filter to eliminate the second-order harmonic components. The designed system consists of a wound rotor induction generator and power-electronics converters at both rotor and grid sides. The modifications are applied to the rotor side converter (RSC). Simulations in Matlab/Simulink illustrate the enhanced stability of torque, active and reactive powers delivered by DFIG in both the SFOC-based and DPC-based schemes. Moreover, comparisons in simulation results, obtained separately from all the presented control structures, are provided to evaluate the effectiveness of the newly proposed scheme.
机译:本文介绍了风力涡轮机中双馈感应发电机(DFIG)的先前和新修改的定子磁链定向控制(SFOC)和直接功率控制(DPC)结构,以改善电网期间的有功功率,无功功率和发电机转矩响应电压不平衡。在新提出的基于SFOC的方案中,该方案着重于提高发电机的转矩性能,使用了具有抗饱和度的PI控制器,陷波滤波器和序列分量控制器(SCC)。其他控制技术使用具有抗饱和度的PI控制器的单个或多个应用程序,具有抗饱和度和陷波滤波器的混合PI-Fuzzy控制器来消除二阶谐波分量。设计的系统由绕线转子感应发电机和位于转子和电网两侧的电力电子转换器组成。修改内容适用于转子侧变频器(RSC)。 Matlab / Simulink中的仿真说明了DFIG在基于SFOC的方案和基于DPC的方案中传递的扭矩,有功和无功功率的稳定性得到了提高。此外,还提供了与所有提出的控制结构分开获得的仿真结果比较,以评估新提出的方案的有效性。

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