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首页> 外文期刊>Journal of Electrical Engineering >Analysis of instantaneous frequency, instantaneous amplitude and phase angle of ferroresonance in electrical power networks
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Analysis of instantaneous frequency, instantaneous amplitude and phase angle of ferroresonance in electrical power networks

机译:电力系统铁磁谐振的瞬时频率,瞬时幅度和相角分析

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Ferroresonance is a nonlinear phenomenon that damages the undesired, destructive system for energy transmission lines. The formation and development of this overvoltage ferroresonance phenomenon is an important research topic as a mysterious event in energy power systems. In this study, Seyit Omer-Iklar energy transmission line from Turkey’s electrical transmission networks was modelled using real parameters. Ferroresonance scenario was created on the model. The energy transmission system with the scenario is set to a simulation time of 4 seconds. The first two seconds are set to normal. By cutting off the transmission line in the 2nd sec., the system is provided with ferroresonance drift. According to the data obtained therefrom, spectrograms, instantaneous amplitude, instantaneous frequency and instantaneous phase were conducted. The analyses have made clear that the instantaneous frequency amplitude defined the system’s ferroresonance moment very well.
机译:铁磁谐振是一种非线性现象,会损坏能量传输线不希望的破坏性系统。这种过电压铁磁谐振现象的形成和发展是一个重要的研究课题,是能源电力系统中的一个神秘事件。在这项研究中,土耳其的输电网络的Seyit Omer-Iklar能量传输线是使用真实参数建模的。在模型上创建了Ferroresonance方案。具有场景的能量传输系统的模拟时间设置为4秒。前两秒设置为正常。通过在第二秒切断传输线,为系统提供了铁磁谐振漂移。根据从中获得的数据,进行频谱图,瞬时幅度,瞬时频率和瞬时相位。分析表明,瞬时频率幅度很好地定义了系统的铁磁矩。

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