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Preventing Transformer Energizing Resonant Overvoltages Using Surge Arrester Temperature Rise Index and Controlled Closing Method

机译:使用浪涌避雷器温升指标和受控闭合方法防止变压器产生谐振过电压

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摘要

Resonant overvoltages caused by transformer energization in relatively weak systems, especially during power system restoration, are investigated in this paper. These transient overvoltages may result in failures, especially for surge arresters. A theoretical analysis is performed to obtain the transformer inrush current harmonics and the transmission-line lengths for which the harmonic resonance is likely to occur. The temperature rise of surge arresters is proposed as an index to diagnose a harmonic resonance case. An appropriate electrothermal model for metal–oxide surge arresters is developed using the thermal model and proposed combined electrical model. Comprehensive transient simulation studies are performed to find out the harmonic resonance cases using the proposed index. Obtained simulation results are in good agreement with the analytical results. To reduce such harmonic resonance cases, controlled closing of the transformer can be utilized. In this paper, the proper instants for transformer energization are proposed in such a way that the overvoltage is reduced to acceptable values.
机译:本文研究了在较弱的系统中,特别是在电力系统恢复期间,由变压器通电引起的谐振过电压。这些瞬态过电压可能会导致故障,特别是对于电涌放电器。进行理论分析以获得变压器涌入电流谐波和可能发生谐波谐振的传输线长度。建议将电涌放电器的温度升高作为诊断谐波谐振情况的指标。使用热模型并提出了组合电模型,开发了适用于金属氧化物避雷器的电热模型。进行了全面的瞬态仿真研究,以使用提出的指标找出谐波谐振的情况。仿真结果与分析结果吻合良好。为了减少这种谐波谐振情况,可以利用变压器的受控闭合。在本文中,提出了适当的变压器通电瞬间,以使过电压降低到可接受的值。

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