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Nonlinear dynamic analysis and ZnO-based suppression of ferroresonance overvoltage in distribution network

机译:配电网铁磁谐振过电压的非线性动力学分析和基于ZnO的抑制

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Ferroresonance overvoltage that is caused by saturation in electromagnetic type voltage transformers occurs frequently. In order to avoid interference from ferroresonance overvoltage in the safe operation of a power system, it is a to study a reliable and stable resonance elimination measure. Firstly, different types of ferromagnetic resonances are obtained with the different ratio of capacitive reactance and inductive reactance. Thereafter, nonlinear dynamics research method is used to analysis the effect of inhibiting ferroresonance in ZnO nonlinear resistance grounding mode. Finally, the method is verified by ATP-EMTP. The results show that the voltage amplitude of the neutral point through nonlinear resistance falls under normal circumstances and chaotic phenomena is eliminated. The results imply that the suppression measure can well inhibit ferroresonance overvoltage.
机译:由电磁型变压器饱和引起的铁磁过电压经常发生。为了避免在电力系统的安全运行中受到铁磁谐振过电压的干扰,研究一种可靠,稳定的消除共振的措施。首先,以不同的电容电抗和电感电抗的比率获得不同类型的铁磁共振。此后,采用非线性动力学研究方法分析了ZnO非线性电阻接地方式对铁磁谐振的抑制作用。最后,通过ATP-EMTP对方法进行了验证。结果表明,在正常情况下,通过非线性电阻产生的中性点电压幅值下降,消除了混沌现象。结果表明该抑制措施可以很好地抑制铁磁谐振过电压。

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