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Combined parameters selection of a proportional integral plus resonant controller for harmonics compensation in a wind energy conversion system

机译:用于风能转换系统中的谐波补偿的比例积分加上谐振控制器的组合参数选择

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This paper introduces the use of the Naslin polynomial technique in order to tune a proportional integral resonant (PIR) controller for the rotor-side converter of a grid-connected wind energy conversion system (WECS), which is based on a back-to-back converter and a doubly fed induction generator (DFIG). The objective of the proportional integral part of the PIR controller is to control the active and reactive power of the rotor-side converter, while the resonant part of the PIR controller deals with the stator current harmonics of the generator due to grid voltage distortions. Most papers that use PIR controllers for WECS often carry out the separated tuning of the PI part and then the tuning of the resonant part without any guide. In this paper, the tuning of the PIR controller as a single controller is proposed taking into account the mathematical base of the Naslin polynomial technique. The case of study is a WECS based on a 50 HP DFIG, and the considered grid voltage harmonics are the fifth and seventh. Simulations were implemented to evaluate the compensation of the current harmonics with the selected PIR controller values.
机译:本文介绍了Naslin多项式技术的使用,以调整用于网格连接的风能转换系统(WECS)的转子侧转换器的比例整体谐振(PIR)控制器,其基于返回 - 后转换器和双馈感应发电机(DFIG)。 PIR控制器的比例整体部分的目的是控制转子侧转换器的主动和无功功率,而PIR控制器的谐振部分涉及由于电网电压失真引起的发电机的定子电流谐波。使用PIR控制器的大多数论文通常会执行PI部分的分离调谐,然后在没有任何导向器的情况下调整共振部分。在本文中,考虑了NASLIN多项式技术的数学基础,提出了PIR控制器作为单个控制器的调谐。研究案例是基于50 HP DFIG的WEC,并且所考虑的电网电压谐波是第五和第七。实施模拟以评估当前谐波与所选PIR控制器值的补偿。

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