Hopf bifurcation analysis to dynamic voltage stability of flexible AC transmission system

Yan Wang, Yuanwei Jing, Wei-Lun Zhao, Hongtao Yu
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引用次数: 1

Abstract

For a single-machine infinite-bus system with thyristor controlled series capacitor(TCSC), a new approach is proposed to solve Hopf bifurcation point of dynamic voltage stability by reduced order, and the feature of the proposed approach is to reduce the order of a (3n+2)-dimensional Newton iterative equations to a (n+2)-dimensional linear equations. Comparing with traditional direct calculation method, the calculation burden can be mitigated and avoided curse of dimensionality, so it is suitable to the analysis and calculation of dynamic voltage stability of a single-machine infinite-bus system. By the nonlinear analysis software package-Auto97, the dynamic voltage stability of a single-machine infinite-bus system is studied in detail with the method proposed in this paper. The test in this example shows that the bifurcation theory can be more accurate than the linearization method in analyzing the dynamical stability near the critical point of the power systems.
柔性交流输电系统动态电压稳定性的Hopf分岔分析
针对具有晶闸管控制串联电容(TCSC)的单机无限母线系统,提出了一种降阶求解动态电压稳定Hopf分岔点的新方法,其特点是将(3n+2)维牛顿迭代方程降阶为(n+2)维线性方程。与传统的直接计算方法相比,减轻了计算负担,避免了维数损失,适用于单机无限母线系统动态电压稳定性的分析与计算。本文利用非线性分析软件包auto97对单机无限母线系统的动态电压稳定性进行了详细的研究。算例试验表明,分岔理论比线性化方法更能准确地分析电力系统在临界点附近的动态稳定性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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