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A study on Hopf bifurcations for power system stability analysis

机译:电力系统稳定性分析的Hopf分叉研究

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Hopf bifurcations are well known as a kind of local bifurcation that can occur in power system dynamics causing the nominal equilibrium of the system to lose their structural stability as the parameters pass through the bifurcation points. In this paper, based on the so far developments in this field, a study on Hopf bifurcations is presented for power system stability analysis. First, Hopf bifurcations in dynamic systems are demonstrated by mathematical equations. Then, varieties of phenomena in power systems, which may lead in Hopf bifurcations, are investigated. In addition, identifying of Hopf bifurcations are studied and various methodologies to analyze and control them are considered. Furthermore, different modeling levels with their relevant differential-algebraic equations are studied and Hopf bifurcation analysis of different order models of system considering induction motors and impedance load conditions supplied by under-load tap-changer transformers (ULTC) are taken into account.
机译:Hopf分叉是一种局部分叉,众所周知,它可能会在电力系统动力学中发生,导致系统的名义平衡在参数通过分叉点时失去其结构稳定性。本文基于该领域的最新发展,提出了关于Hopf分叉的研究,用于电力系统的稳定性分析。首先,通过数学方程式证明了动力系统中的霍普夫分支。然后,研究了电力系统中可能导致Hopf分叉的各种现象。此外,研究了霍普夫分叉的识别,并考虑了各种分析和控制它们的方法。此外,研究了不同的建模水平及其相关的微分代数方程,并考虑了由感应电动机和欠载分接开关变压器(ULTC)提供的阻抗负载条件对系统的不同阶次模型进行的Hopf分叉分析。

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