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On Stability Analysis of Power Grids with Synchronous Generators and Grid-Forming Converters under DC-side Current Limitation

机译:直流侧电流限制下同步发电机电网稳定性分析和同步发电机的电网

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Stability of power grids with synchronous generators (SGs) and renewable generation interfaced with grid-forming converters (GFCs) under dc-side current limitation is studied. To that end, we first consider a simple 2-bus test system and reduced-order models to highlight the fundamental difference between two classes of GFC controls - (A) droop, dispatchable virtual oscillator control (dVOC) and virtual synchronous machine (VSM), and (B) matching control. Next, we study Lyapunov stability and input-output stability of the dc voltage dynamics of class-A GFCs for the simple system and extend it to a generic system. Next, we provide a sufficiency condition for input-to-state stability of the 2-bus system with a class-B GFC and extend it for a generic system. Finally, time-domain simulations from a reduced-order averaged model of the simple test system and a detailed switched model of the GFC validate the proposed conditions.
机译:研究了在直流侧电流限制下与相连的转换器(GFC)接口的同步发电机(SGS)和再生生成的电网稳定性。 为此,我们首先考虑一个简单的2公交车测试系统和缩小订单模型,以突出两类GFC控制 - (a)下垂,调度虚拟振荡器控制(DVOC)和虚拟同步机(VSM)之间的根本差异 (b)匹配控制。 接下来,我们研究简单系统的A类直流电压动力学的Lyapunov稳定性和输入 - 输出稳定性,并将其扩展到通用系统。 接下来,我们提供了具有类别-B GFC的2-Bus系统的输入到状态稳定性的充足条件,并将其扩展为通用系统。 最后,从简单测试系统的减少平均模型和GFC的详细交换模型的时域仿真验证了所提出的条件。

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