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Modeling and control of unbalanced and distorted grid voltage of grid-connected DFIG wind turbine

机译:网格连接DFIG风力涡轮机不平衡和扭曲电网电压的建模与控制

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This paper presents a mathematical modeling and current control of DFIG wind turbine system in the presence of unbalanced and harmonic distortions in the grid voltage. A proportional resonant (PR) current controller is modeled and implemented to reduce the impacts caused by the presence of double-frequency, fifth and seventh harmonic components in the generator torque, active and reactive power and the grid active power to which the wind generation system is connected. To reduce the impacts of the presence of the harmonics and unbalanced voltage in the stator and grid active and reactive powers, the dq-axis current components of these harmonics are controlled separately in the rotor and grid side converters. The use of PR controllers represents the addition of a specific function that eliminates the negative sequence and harmonic components from the rotor current components which reduce the oscillations of the generator torque and grid active power. The performance of the proposed control algorithm is validated through experiments and evaluated during the grid disturbances.
机译:本文介绍了在网格电压中不平衡和谐波扭曲存在下DFIG风力涡轮机系统的数学建模和电流控制。建模和实施的比例谐振(PR)电流控制器以减少由发电机扭矩,主动和无功功率的双频率,第五和第七次谐波部件以及风力发电系统的电网有源电力引起的冲击已连接。为了减少定子和电网主动和无功功率中谐波和不平衡电压的存在的影响,这些谐波的DQ轴电流分量在转子和网格侧转换器中分开控制。 PR控制器的使用表示从转子电流元件中消除负序列和谐波分量的特定功能,该转子电流分量减少了发电机扭矩和网格有源电力的振荡。通过实验验证所提出的控制算法的性能,并在网格障碍期间进行评估。

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