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Nonlinear Modal Decoupling Based Power System Transient Stability Analysis

机译:基于非线性模态解耦的电力系统瞬态稳定性分析

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Nonlinear modal decoupling (NMD) was recently proposed to nonlinearly transform a multi-oscillator system into as many decoupled oscillators as the oscillation modes of interests with the original system. Those decoupled oscillators together provide a fairly accurate approximation of behaviors of the original system in an extended neighborhood of the equilibrium. Each oscillator has just one degree of freedom and hence can easily be analyzed to infer the nonlinear dynamics of the original system associated with one oscillation mode. As the first attempt of applying the NMD methodology to realistic power system models, this paper proposes an NMD-based approach for the early warning of the oscillation mode that may most likely develop into a mode of transient instability. For a multi-machine power system, the approach first derives decoupled nonlinear oscillators by a coordinates transformation, and then applies Lyapunov stability analysis to decoupled oscillators to assess the stability of the original system. For large-scale power grids, the proposed approach can be efficiently applied by conducting NMD regarding only selected modes. Case studies on a 3-machine 9-bus system and an northeast power coordinating council (NPCC) 48-machine 140-bus system show the potentials of the approach in early warning of transient instability for multi-machine systems.
机译:非线性模态解耦(NMD)最近提出了非线性变换多振荡器系统到尽可能多的去耦振荡器作为与原系统的利益振荡模式。这些分离的振荡器一起提供原有系统的工况相当准确的近似均衡的扩展附近。每个振荡器只有一个自由度,因此可以很容易地进行分析,以推断出与一个振荡模式相关联的原始系统的非线性动力学。作为把NMD方法,以现实的电力系统模型的第一次尝试,本文提出了一种可能最有可能发展成短暂不稳定的模式的振荡模式的预警基于NMD的方法。对于多机电力系统,该方法首先导出由坐标变换解耦非线性振荡器,然后应用Lyapunov稳定性分析,以去耦振荡器来评估原始系统的稳定。对于大型电网,所提出的方法可以有效地通过进行NMD仅关于所选的模式施加。 3机9总线系统和东北功率协调委员会(NPCC)48机140总线系统上的情况下的研究表明在多机系统暂态不稳定预警方法的潜力。

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