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A numerical study of the effect of degenerate Hopf bifurcations on the voltage stability in power systems

机译:简并Hopf分叉对电力系统电压稳定性影响的数值研究

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Bifurcation theory has been employed to qualitatively explain the mechanisms of voltage stability problems occurring in electric power systems by relating the voltage collapse and voltage oscillatory problems to the appearance of saddle node and Hopf bifurcations, respectively. The results obtained by bifurcation analysis have revealed the existence of degenerate Hopf bifurcations when two parameters of the system are varied simultaneously; however, the mechanisms of voltage stability problems when the system is operating near these kinds of bifurcations have not yet been investigated. Bearing this in mind, the main scope of this paper is to assess how the voltage stability of a power system is affected by the presence of codimension-2 degenerate Hopf bifurcations. From the multiparameter bifurcation analysis, the existence of degenerate Hopf bifurcation points are identified and a trajectory stability diagram is then computed for classifying the type of degenerate Hopf bifurcations. This classification is used for establishing the voltage dynamics' behavior when the power system is operating near these bifurcations. Finally, the application of a StatCom is proposed to eliminate sustained voltage oscillations and the appearance of degenerate Hopf bifurcations.
机译:分叉理论已被用来定性地解释电力系统中发生的电压稳定性问题的机制,方法是将电压崩溃和电压振荡问题分别与鞍形节点和Hopf分叉的出现联系起来。通过分叉分析获得的结果表明,当同时改变系统的两个参数时,存在简并的Hopf分叉。但是,尚未研究系统在这些分叉附近工作时的电压稳定性问题机理。牢记这一点,本文的主要范围是评估存在codimension-2退化的Hopf分叉如何影响电力系统的电压稳定性。从多参数分叉分析中,识别出简并的Hopf分叉点的存在,然后计算轨迹稳定性图以对简并的Hopf分叉的类型进行分类。当电源系统在这些分叉附近工作时,此分类用于建立电压动态行为。最后,提出了StatCom的应用,以消除持续的电压振荡和简并的Hopf分叉的出现。

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