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Nonlinear Koopman modes and power system stability assessment without models

机译:无模型的非线性Koopman模式和电力系统稳定性评估

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The loss of stability-an instability-can become a critical cause of emergent cascading outages leading to widespread blackouts. Penetration of renewable energy sources makes the problem of instability more urgent because of the highly fluctuating nature of such sources. Here we show a data-based approach to stability assessment of power systems without models. This approach is enabled by Koopman mode analysis for nonlinear dynamical systems, which detects an instability based on the properties of the point spectrum of the Koopman operator. We apply the technique to data on physical power flows sampled from the two major accidents, the 2011 Arizona-Southern California grid outage and the 2006 system disturbance of the European interconnected grid, and successfully detect unstable power flow patterns that govern the complex dynamics occurring during the accidents.
机译:稳定性的丧失(不稳定)可能成为导致级联中断的紧急原因,从而导致大范围的停电。由于可再生能源的高度波动性,其渗透使不稳定问题变得更加紧迫。这里我们展示了一种基于数据的不带模型的电力系统稳定性评估方法。通过对非线性动力系统进行Koopman模式分析,可以启用此方法,该系统基于Koopman算子的点谱属性检测不稳定性。我们将该技术应用于从两次重大事故(2011年亚利桑那州-南加利福尼亚州电网中断和2006年欧洲互联电网的系统扰动)中采样的物理潮流数据,并成功检测到了不稳定的潮流模式,这些模式控制了期间发生的复杂动态事故。

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