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电动汽车驱动 下垂控制 ★ 5.0

电压下垂控制下电力系统的 小信号稳定性

Small-signal stability of power systems with voltage droop

作者 Jakob Niehues · Robin Delabays · Anna Büttner · Frank Hellmann
期刊 IEEE Transactions on Power Systems
出版日期 2025年9月
技术分类 电动汽车驱动
技术标签 下垂控制
相关度评分 ★★★★★ 5.0 / 5.0
关键词 逆变器主导电网 小信号稳定性 控制条件 复频率 不稳定逆变器
语言:

中文摘要

确保未来以逆变器为主导的电网稳定性是电网运营商面临的核心挑战,尤其是当来自多个供应商的设备相互作用时。在这项工作中,我们推导出了保证小信号稳定性的新条件。这些条件与设备特性无关,并且可以在每个母线的邻域内进行局部验证。逆变器可以具有高度的异质性,并可以实施任何关于频率、电压幅值、有功和无功功率以及内部状态的控制律。我们所做的唯一结构假设是,控制实现了电压幅值和无功功率之间的精确下垂关系,并且整个电网具有恒定的电阻电抗比(R/X)。当将这些条件应用于已有的控制设计模型时,我们能够重现并推广已有的结果。为此,我们基于最近的小相位定理,并将其应用于网络化系统。在电网建模方面的核心创新之处在于使用复频率来描述逆变器的相关动态行为。虽然这些条件是充分而非必要条件,但我们发现它们在实际应用中并非过于保守。此外,我们发现这些条件能够识别出导致不稳定的单个逆变器。

English Abstract

Guaranteeing the stability of future, inverter-dominated power grids is a central challenge for grid operators, especially when devices from multiple vendors interact. In this work, we derive novel conditions that guarantee small-signal stability. They are independent of device specifics and are locally verifiable in the neighborhood of each bus. The inverters can be highly heterogeneous and implement any control law of frequency, voltage amplitude, active and reactive power, and internal states. The only structural assumptions we make are that the control implements an exact droop relationship between voltage magnitude and reactive power, and that we have a constant R/X ratio throughout the grid. When applied to established models of control designs, we reproduce and generalize established results. To achieve this, we build on the recent small-phase theorem and adapt it to networked systems. The central novelty on the grid modeling side is the use of complex frequency to capture the relevant dynamical behavior of the inverters. While the conditions are sufficient but not necessary, we find that they are not overly conservative in practice. Furthermore, we find that they can identify individual inverters that are the cause of instability.
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SunView 深度解读

该电压下垂控制稳定性研究对阳光电源ST储能变流器和PowerTitan大型储能系统具有直接应用价值。研究揭示的下垂系数与线路阻抗比匹配机制,可优化多台ST变流器并联运行时的协调控制策略,提升系统阻尼特性。小信号稳定性分析方法可应用于构网型GFM控制算法的参数整定,特别是在多厂商设备混合并网场景下,为阳光电源设备的兼容性设计提供理论依据。该技术还可延伸至SG光伏逆变器的电压支撑功能优化,以及充电桩集群的电压协调控制,增强弱电网适应能力,降低振荡风险,提升产品在复杂电网环境下的稳定运行能力。