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Power grid modeling based on the electromechanical energy approach aiming power systems stability studies

机译:基于机电能量方法的电网建模,旨在研究电力系统的稳定性

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This paper presents a new modeling approach for power systems aiming its small-signal stability analysis. The work employs an electromechanical correspondence for the electrical grid along with the Lagrangian Energy Method for obtaining system's differential equations. The approach generalizes the so-called Steady-State one, introducing a full matrix for the damping coefficients, which in practice are responsible for damping the oscillations between machines, i.e. the inter-area modes. Modal Analysis results show that the proposed method reaches up to 96% of accuracy for two exemplary benchmark system when compared to simulations from a specialized power systems software.
机译:本文针对电力系统的小信号稳定性分析提出了一种新的建模方法。该工作采用电网的机电对应以及拉格朗日能量法来获得系统的微分方程。该方法概括了所谓的稳态,引入了用于阻尼系数的完整矩阵,该矩阵在实践中负责阻尼机器之间的振荡,即区域间模式。模态分析结果表明,与来自专用电力系统软件的仿真相比,该方法对于两个示例性基准系统的准确性高达96%。

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