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Small-Signal Modeling, Stability Analysis, and Controller Design of Grid-Friendly Power Converters with Virtual Inertia and Grid-Forming Capability

机译:具有虚拟惯性和网格形成能力的电网友好电源转换器的小信号建模,稳定性分析和控制器设计

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Distributed virtual inertia provided by grid-friendly power converters is emerging as an effective way for inertia enhancement and frequency regulation improvement in more-electronics power systems. However, most existing methods attempt to generate distributed virtual inertia by grid-following power converters. As compared with conventional grid-feeding power converters, grid-forming power converters, i.e. the ones controlled as ac voltage sources, are more promising owing to their capabilities of voltage and frequency regulation. As such, this paper explores the possibility of inertia emulation by grid-forming power converters. Through the stability analysis, it is revealed that the instability issue is associated with typical virtual inertia control. Further, a lead-lag compensator is introduced to resolve this issue. To better stabilize the system, a detailed small signal model is derived, and the sensitivity analysis is applied to study the critical poles.
机译:通过网格友好的电力转换器提供的分布式虚拟惯性是惰性增强和频率调节在更多电子电力系统中的有效方法。但是,大多数现有方法尝试通过电网跟随电源转换器生成分布式虚拟惯性。与传统的网格供电转换器相比,相连的电力转换器,即控制为AC电压源的电压,由于它们的电压和频率调节的能力而言更有前景。因此,本文探讨了网格形成功率转换器惯性仿真的可能性。通过稳定性分析,揭示了不稳定问题与典型的虚拟惯性控制有关。此外,引入了引线滞后补偿器来解决此问题。为了更好地稳定系统,得出了一种详细的小信号模型,并应用灵敏度分析来研究临界极。

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