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A combined phase locked loop technique for grid synchronization of power converters under highly distorted grid conditions

机译:电网高度失真条件下用于功率转换器电网同步的组合锁相环技术

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In power distribution networks, the fundamental positive-sequence component detection of the utility voltage is required to synchronize the control reference signals of power converters with the fundamental components of this voltage. Accurate and fast positive-sequence information for grid synchronization under unbalanced and highly distorted conditions is essential to ensure the synchronization, the correct generation of the reference signals and to cope with different grid conditions such as line harmonics, voltage sags and frequency fluctuations. This paper presents a combined phase locked loop technique for grid- interfaced converters that is robust under two phases short-circuits, imbalances and high harmonic distortions, while being frequency-adaptive. The proposed system is called MVF-DSOGI-PLL since it is firstly based on a combination of multi-variable filter (MVF) and dual SOGI-based quadrature-signals generator (DSOGI-QSG) and secondly on a phase-locked loop (PLL), which makes the system frequency-adaptive. In this paper, a detailed study of the MVF-DSOGI-PLL is performed and various simulation results of the proposed technique are presented under highly distorted grid conditions to confirm its validity and robustness.
机译:在配电网络中,需要对公用电源电压进行基本正序分量检测,以使电源转换器的控制参考信号与该电压的基本分量同步。在不平衡和高度失真的条件下,用于电网同步的准确,快速的正序信息对于确保同步,正确生成参考信号以及应对不同的电网条件(例如线路谐波,电压骤降和频率波动)至关重要。本文提出了一种用于电网接口转换器的组合锁相环技术,该技术在两相短路,不平衡和高谐波失真的情况下具有稳健性,并且具有频率适应性。提议的系统称为MVF-DSOGI-PLL,因为它首先基于多变量滤波器(MVF)和基于双SOGI的正交信号发生器(DSOGI-QSG)的组合,其次基于锁相环(PLL) ),从而使系统具有频率适应性。在本文中,对MVF-DSOGI-PLL进行了详细的研究,并在高度失真的网格条件下给出了该技术的各种仿真结果,以证实其有效性和鲁棒性。

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