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Experimental and simulation analysis of ferroresonance in single-phase transformers considering magnetic hysteresis effects

机译:考虑磁滞效应的单相变压器铁磁谐振实验与仿真分析

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Ferroresonance is one of the most destructive and longest known power quality disturbances in the history of ac power systems. The undamped ferroresonant oscillations that occur between system capacitances and magnetizing inductances of transformer cores can cause severe damage and disruption to power networks. In this paper, ferroresonance in transformers is investigated with the aid of a nonlinear core model which includes magnetic hysteresis effects. Bifurcation and phase-plane analyses are applied to investigate the stability domain of ferroresonance. The impact of resulting ferroresonance modes on transformer voltages, core fluxes and magnetizing currents are shown in time-domain. Supporting measurements of ferroresonance are also provided for verifying model predictions of ferroresonance.
机译:铁磁谐振是交流电源系统历史上最具破坏性和最长的已知电能质量扰动之一。系统电容与变压器铁芯的励磁电感之间发生的无阻尼铁磁谐振可能会导致严重损坏并破坏电网。在本文中,借助于包含磁滞效应的非线性磁芯模型,研究了变压器中的铁磁谐振。分叉和相平面分析用于研究铁磁谐振的稳定域。时域显示了产生的铁磁谐振模式对变压器电压,铁芯磁通和励磁电流的影响。还提供了对铁磁谐振的支持测量,以验证对铁磁谐振的模型预测。

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