电力系统中的非线性振荡和电压崩溃现象

V. Ajjarapu, B. Lee
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引用次数: 7

摘要

作者着重讨论了与发电机和负荷动力学相关的模态分岔,以显示两种不同临界状态之间的关系。作者使用I. Dobson等人(1988)开发的样本电力系统模型观察到,系统会遇到振荡型不稳定和崩溃型不稳定。除了Dobson等人报道的坍缩型失稳外,还利用Hopf分岔理论分析了振荡型失稳。本文利用分岔理论对一个电力系统的这两种不稳定性进行了分析。通过中心流形约简技术,将整个系统动力学模型简化为一维流形,研究了系统的坍缩型失稳。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Nonlinear oscillations and voltage collapse phenomenon in electrical power system
The authors focus on bifurcation of modes associated with both the generator and load dynamics to show the relations between two different critical states. The authors observe that a system encounters both oscillatory-type instability and collapse-type instability using a sample power system model developed by I. Dobson et al. (1988). In addition to the collapse-type instability reported by Dobson et al., oscillatory-type instability is analyzed by using Hopf bifurcation theory. The authors analyze these two types of system instability in a sample power system via bifurcation theory. Collapse-type instability is studied through the center manifold reduction technique, which reduces the entire system dynamic model to a one dimensional manifold.<>
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