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Proportional Integral Resonant Controller for Current Harmonics Mitigation in a Wind Energy Conversion System

机译:用于风能转换系统电流谐波缓解的比例整体谐振控制器

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This paper presents the tuning and simulation of a Proportional Integral Resonant (PIR) controller for the rotor side converter of a grid connected wind energy conversion system (WECS) based in a doubly fed induction generator and a back to back converter. The purpose of the resonant part of the PIR controller is to compensate the current harmonics in the stator of the generator due to grid voltage distortions, while the PI component deal with the typical control objectives of the rotor side converter like active and reactive power control. The case of study is a test rig based in a 372 W doubly fed induction generator, and the considered grid voltage harmonics components are fifth and seventh. Simulations implemented in PSIM are carried out to evaluate the current harmonics compensation with the selected PIR.
机译:本文介绍了基于双馈电气能量转换系统(WECS)的转子侧转换器的比例积分谐振(PIR)控制器的调谐和模拟,基于双馈电气能量转换系统和返回到后转换器。 PIR控制器的谐振部分的目的是通过电网电压失真来补偿发电机定子中的电流谐波,而PI分量处理转子侧转换器的典型控制目标,如主动和无功控制。研究的情况是基于372W双馈感应发生器的测试钻机,并且所考虑的电网电压谐波部件是第五和第七个。进行PSIM中实现的模拟以评估当前与所选PIR的谐波补偿。

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