论文标题
放置网格形成转换器以增强PLL集成电源系统的小信号稳定性
Placing Grid-Forming Converters to Enhance Small Signal Stability of PLL-Integrated Power Systems
论文作者
论文摘要
现代电网具有较高的功率转换器的渗透率,该电源转换器广泛采用了相锁的环(PLL)进行网格同步。但是,已经指出,在弱网格条件下,PLL可以引起小信号的不稳定性。可以通过以网格形成模式操作转换器来解决此问题,即不使用PLL。尽管如此,理论上尚未揭示网格形成转换器的放置如何增强与基于大型PLL的转换器集成的动力系统的小信号稳定性。本文旨在填补这一空白。基于矩阵扰动理论,我们明确证明了网格形成转换器的放置等同于提高功率电网强度,从而改善了基于PLL的转换器的小信号稳定性。此外,我们通过增加功率网络的加权和KRON还原的Laplacian矩阵的最小特征值来研究最佳位置,以放置网格形成转换器。本文中的分析是通过对修改的两个面积测试系统和改进的39个总线测试系统的高保真仿真研究来验证的。本文有可能为理解基于PLL的(即网格添加)转换器和格式形成转换器之间的相互作用奠定基础,并协调其在未来转换器主导的电源系统中的位置。
The modern power grid features the high penetration of power converters, which widely employ a phase-locked loop (PLL) for grid synchronization. However, it has been pointed out that PLL can give rise to small-signal instabilities under weak grid conditions. This problem can be potentially resolved by operating the converters in grid-forming mode, namely, without using a PLL. Nonetheless, it has not been theoretically revealed how the placement of grid-forming converters enhances the small-signal stability of power systems integrated with large-scale PLL-based converters. This paper aims at filling this gap. Based on matrix perturbation theory, we explicitly demonstrate that the placement of grid-forming converters is equivalent to increasing the power grid strength and thus improving the small-signal stability of PLL-based converters. Furthermore, we investigate the optimal locations to place grid-forming converters by increasing the smallest eigenvalue of the weighted and Kron-reduced Laplacian matrix of the power network. The analysis in this paper is validated through high-fidelity simulation studies on a modified two-area test system and a modified 39-bus test system. This paper potentially lays the foundation for understanding the interaction between PLL-based (i.e., grid-following) converters and grid-forming converters, and coordinating their placements in future converter-dominated power systems.