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Decomposition of energy function and hierarchical diagnosis of power grid swing instabilities

机译:能量函数分解与电网摇摆不稳定性的分级诊断

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This paper considers an electric power grid with multiple synchronous machines exhibiting coupled swing dynamics and aims at developing a hierarchical diagnosis of loss of transient stability of the machines, which we term as swing instabilities. We introduce a standard energy function for the power grid and decompose it into individual energy functions of a collective system of the grid, of the motions relative to the collective system, and of the infinite bus. This decomposition enables us to extract distinctive behaviors embedded in the swing instabilities in terms of energy. We numerically apply the individual energy functions in the proposed decomposition to analysis of swing instabilities in the IEEE New England 39-bus test system. We then propose a hierarchical diagnosis of the swing instabilities based on the decomposition and discuss its validity by approximating the individual energy functions along solutions representing the grid's instabilities.
机译:本文考虑了具有多台同步电机的电网,这些电机具有耦合的摆动动力学特性,旨在开发一种分级诊断电机瞬态稳定性损失的方法,我们将其称为摆动不稳定性。我们为电网引入了标准能量函数,并将其分解为电网的集合系统,相对于集合系统的运动以及无限母线的单个能量函数。这种分解使我们能够从能量方面提取嵌入在挥杆不稳定性中的独特行为。我们将提议的分解中的各个能量函数数值应用到IEEE New England 39总线测试系统中的摆动不稳定性分析中。然后,我们根据分解结果提出秋千不稳定性的分级诊断方法,并通过沿着代表电网不稳定性的解近似各个能量函数来讨论其有效性。

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