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Voltage Transformer Ferroresonance Analysis Using Multiple Scales Method and Chaos Theory

机译:基于多尺度法和混沌理论的电压互感器铁磁谐振分析

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摘要

In this article, the Multiple Scales Method is used to analyze the chaotic behavior and different types of fixed points in ferroresonance of voltage transformers considering core loss. This phenomenon has nonlinear chaotic dynamics and includes subharmonic, quasi-periodic, and also chaotic oscillations. In this article, the chaotic behavior and various ferroresonant oscillationsmodes of the voltage transformer is studied. This phenomenon consists of different types of bifurcations such as Period Doubling Bifurcation (PDB), Saddle Node Bifurcation (SNB), Hopf Bifurcation (HB) and chaos. The dynamic analysis of ferroresonant circuit is based on bifurcation theory. The bifurcation and phase plane diagrams are illustrated using a continuous method and linear and nonlinear models of core loss. To analyze ferroresonance phenomenon, the Lyapunov exponents are calculated via Multiple Scales Method obtaining Feigenbaum numbers. The bifurcation diagrams illustrate the variation of the control parameter. Therefore, the chaos is created and increased in the system.
机译:在本文中,使用多尺度方法来分析考虑铁芯损耗的变压器铁磁谐振中的混沌行为和不同类型的固定点。这种现象具有非线性混沌动力学,包括次谐波,准周期以及混沌振荡。本文研究了变压器的混沌行为和各种铁磁谐振模式。这种现象由不同类型的分叉组成,例如周期倍增分叉(PDB),鞍形节点分叉(SNB),霍普夫分叉(HB)和混沌。铁磁谐振电路的动态分析基于分叉理论。分叉图和相平面图使用连续方法以及铁损的线性和非线性模型进行说明。为了分析铁磁共振现象,通过多尺度方法计算李根普诺夫指数,得到费根鲍姆数。分叉图说明了控制参数的变化。因此,在系统中产生并增加了混乱。

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