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Grid-Synchronization Modeling and Its Stability Analysis for Multi-Paralleled Three-Phase Inverter Systems

机译:多并联三相逆变器系统的电网同步建模及其稳定性分析

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Synchronization instability issue and the corresponding low-frequency power oscillation phenomenon between synchronous generators were already found in electric power systems and addressed by various solutions. However, the grid-synchronization behaviors and the potential instabilities between multi-paralleled power electronic inverters have not been well-understood due to the different synchronization mechanisms. This paper presents a set of small-signal modeling methodologies to predict the low-frequency behaviors of the grid-synchronization loops in multi-paralleled inverter systems. The proposed model can predict the low-frequency unstable oscillation in large-penetrated renewable-energy systems as well as assess the effectiveness of frequency-based islanding-detection under multi-paralleled inverter conditions.
机译:同步不稳定问题和同步发电机之间的相应低频功率振荡现象在电力系统中已经找到,并由各种解决方案寻址。然而,由于不同的同步机制,网格同步行为和多并联电力电子逆变器之间的潜在不稳定性尚未得到很好地理解。本文介绍了一组小信号建模方法,以预测多并联逆变器系统中网格同步环路的低频行为。所提出的模型可以预测大穿透的可再生能量系统中的低频不稳定振荡​​,以及评估多并联逆变器条件下频率的岛地检测的有效性。

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