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Research on Harmonic Suppression of New Controller in Islanding Mode of Microgrid

机译:在微电网岛化模式下谐波抑制新控制器的谐波抑制研究

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摘要

The proportional complex integral (PCI) controller can realize zero steady-state error control of AC signals with specific frequencies in a static coordinate system. The frequency of the traditional power grid is relatively fixed, so the zero steady-state error control of the AC signal is realized by adopting the PCI controller. With the increasing proportion of renewable energy generation, the frequency characteristics in the power system become uncertain. When the microgrid operates in island mode. the frequency of the fundamental wave and harmonics fluctuates greatly, which causes the PCI controller to fail to achieve zero steady-state error control. This paper proposes two controllers: positive and negative sequence decoupling quasi-proportional complex integral (PNDQPCI) controller and high-order positive and negative sequence decoupling quasi-proportional complex integral (HPNDQPCI) controller. The PNDQPCI controller can effectively control the positive and negative sequence voltage when the system frequency drifts: The HPNDQPCI controller can effectively suppress multiple harmonics. Finally, simulation and experiment are presented to verify the theoretical analysis as well as the feasibility and the superiority of the proposed controller. (C) 2022 Institute of Electrical Engineers of Japan. Published by Wiley Periodicals LLC.
机译:比例复合物积分(PCI)控制器可以实现静态坐标系中特定频率的AC信号的零稳态误差控制。传统电网的频率相对固定,因此通过采用PCI控制器来实现AC信号的零稳态误差控制。随着可再生能源产生比例的增加,电力系统中的频率特性变得不确定。当微电网以岛模式运行时。基本波和谐波的频率大大波动,这导致PCI控制器无法实现零稳态误差控制。本文提出了两个控制器:正序和负序列解耦准型复杂积分(PNDQPCI)控制器以及高阶正和负序列解耦quasi-proportional复合物积分(HPNDQPCI)控制器。当系统频率漂移时,PNDQPCI控制器可以有效地控制正和负序列电压:HPNDQPCI控制器可以有效抑制多个谐波。最后,提出了仿真和实验,以验证理论分析以及所提出的控制器的可行性和优越性。 (c)2022日本电气工程师研究所。由Wiley Wendericals LLC出版。

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