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A novel adaptive frequency extraction method for fast and accurate connection between inverters and microgrids

机译:一种新型自适应频率提取方法,可在逆变器和微电网之间快速准确地连接

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摘要

Renewable energy is being rapidly developed and extensively utilized, which are commonly interfaced to the microgrids through the inverters. Therefore, the proper and fast extraction of the synchronous phases, frequency and amplitudes of the sequence voltages have brought major requirements under unbalanced and distorted microgrid voltage. In this regard, this paper presents a novel adaptive frequency method to improve the instantaneous sequence components detection method, which can significantly improve the accuracy of positive and negative sequence voltages. Based on the symmetric component method and the virtual vector construction module, the positive and negative sequence voltages with errors are calculated. The harmonic suppression module filters out the harmonics and random noise in the sequence voltages with errors. Then, the real-time difference frequency phase information of the sequence voltages is obtained by the difference frequency adjustment. With the closed loop control of the difference frequency phase information, the microgrid frequency can be quickly and accurately obtained. The frequency information is fed back to the virtual vector construction module and the harmonic suppression module to obtain the frequency, amplitudes and synchronous phases of the positive and negative sequence voltages for inverter control in unbalanced and distorted microgrids. When the microgrid frequency changes greatly, the frequency detection module of this method can improve the accuracy of obtaining the positive and negative sequence voltages. Simulation results show that the proposed method can quickly and accurately capture the real-time sequence voltages in the three-phase asymmetric and distorted environment, and the validity and robustness of the proposed method are verified.(c) 2021 Elsevier Ltd. All rights reserved.
机译:可再生能源正在迅速发展和广泛利用,这通常通过逆变器与微电网相互界面。因此,序列电压的同步阶段的适当和快速提取,序列电压的频率和幅度在不平衡和扭曲的微电网电压下带来了主要要求。在这方面,本文提出了一种新的自适应频率方法,以改善瞬时序列分量检测方法,这可以显着提高正序列电压的精度。基于对称组件方法和虚拟矢量构造模块,计算具有误差的正和负序列电压。谐波抑制模块在具有误差的序列电压中滤除谐波和随机噪声。然后,通过差频调节获得序列电压的实时差频率相位信息。利用差频相位信息的闭环控制,可以快速准确地获得微电网频率。频率信息被反馈到虚拟矢量施工模块和谐波抑制模块,以获得用于在不平衡和失血的微普林中的逆变器控制的正和负序电压的频率,幅度和同步相。当微电网频率大大变化时,该方法的频率检测模块可以提高获得正序和负序电压的准确性。仿真结果表明,所提出的方法可以快速准确地捕获三相不对称和失真环境中的实时序列电压,验证了所提出的方法的有效性和鲁棒性。(c)2021 Elsevier Ltd.保留所有权利。

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