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Minimization of powers ripple of direct power controlled DFIG by fuzzy controller and improved discrete space vector modulation

机译:通过模糊控制器和改进的离散空间矢量调制,将直接功率控制的双馈电源的功率纹波最小化

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摘要

This paper presents a new direct power control (DPC) strategy for a double fed induction generator (DFIG) based wind energy generation system. The strategy of the discrete space vector modulation (DSVM) that is on the basis of the DPC, is implemented. The algorithm to select voltage vector can effectively change the response of the system. So, a new analysis is done and a new switching table is proposed. The proposed switching table is presented to optimize the performance of the voltage vectors by accurately designing the sequence of the voltage vectors. Rearranging the sequence of the voltage space vectors has an influence on active power ripple. To enhance the performance of the closed loop system, fuzzy system is proposed in place of the switching table and hysteresis system. The four variables, rotor speed, errors of the active and reactive powers and stator flux position are exerted to the fuzzy system and the output is the vector that should be implemented to the switching devices. The outperformance of the proposed method is demonstrated by performing simulations in Matlab Software.
机译:本文为基于双馈感应发电机(DFIG)的风能发电系统提出了一种新的直接功率控制(DPC)策略。实现了基于DPC的离散空间矢量调制(DSVM)策略。选择电压矢量的算法可以有效地改变系统的响应。因此,进行了新的分析并提出了新的切换表。通过精确设计电压矢量的顺序,提出了建议的开关表,以优化电压矢量的性能。重新排列电压空间矢量的顺序会对有功功率纹波产生影响。为了提高闭环系统的性能,提出了模糊系统来代替切换台和磁滞系统。转子速度,有功功率和无功功率误差以及定子磁链位置这四个变量将应用到模糊系统,输出是应在开关设备上实现的矢量。通过在Matlab软件中进行仿真,证明了该方法的优越性能。

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