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Direct power control of DFIGs based wind energy generation systems under distorted grid voltage conditions

机译:电网电压畸变情况下基于DFIG的风力发电系统的直接功率控制

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摘要

This paper presents an improved direct power control (DPC) strategy of a wind turbine driven doubly fed induction generators (DFIGs) connected to distorted grid voltage conditions. A coordinate control strategy of the grid side converter (CSC) and rotor side converter (RSC) of the DFIG is designed to improve the overall scheme performance. The RSC is controlled based on a DPC principle to eliminate the electromagnetic torque and stator reactive power oscillations. The total active and reactive power oscillations are compensated by the GSC control to achieve constant active and reactive powers from the overall DFIG system. A current control scheme consisting of a proportional integral controller and a resonant compensator tuned at six the grid frequency is proposed to provide accurate control of the GSC current. The proposed control scheme removes rotor current regulators and the decomposition process of the rotor and GSC currents. In addition, the proposed scheme preserves the advantages of the classical DPC. The feasibility of the proposed DPC scheme is validated by simulation studies on a 1.5 MW wind power generation system under harmonically distorted grid voltage conditions. The performance of the proposed and conventional DPC schemes is compared under the same operating conditions. The proposed scheme results show significant improvements in the scheme performance.
机译:本文提出了一种改进的直接功率控制(DPC)策略,该策略由风力涡轮机驱动的双馈感应发电机(DFIG)连接到畸变的电网电压条件。 DFIG的电网侧变流器(CSC)和转子侧变流器(RSC)的坐标控制策略旨在提高总体方案性能。 RSC基于DPC原理进行控制,以消除电磁转矩和定子无功功率振荡。总的有功和无功功率振荡由GSC控制进行补偿,以从整个DFIG系统获得恒定的有功和无功功率。提出了一种电流控制方案,该方案包括一个比例积分控制器和一个在电网频率为6时调谐的谐振补偿器,以提供对GSC电流的精确控制。所提出的控制方案取消了转子电流调节器以及转子和GSC电流的分解过程。另外,所提出的方案保留了经典DPC的优点。通过对1.5 MW风力发电系统在谐波畸变的电网电压条件下的仿真研究,验证了所提出的DPC方案的可行性。在相同的操作条件下比较了建议的DPC方案和常规DPC方案的性能。所提出的方案结果显示出方案性能的显着改善。

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