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Study on the VFTO in 800kV GIS based on Mayr-Schwarz arc model

机译:基于Mayr-Schwarz弧模型的800kV GIS vfto研究

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Numeric simulation and experiment comparison were used to determine the component parameter of GIS which have also provided a dynamic circuit model. The physical process of arc re-ignition is studied based on the theory of arc energy conservation in this paper. Mayr-Schwarz arc equation is applied to establish the model of arc resistance model. A new transient circuit model which simulated disconnector closing and switching off charging current of bus on 800kV GIS is established in EMTP-ATP. Comparing with the traditional arc model, Mayr-Schwarz arc model can better reflect the physical change of arc re-ignition, especially the process of arc extinguishing. At the same time, the amplitudes of VFTO on representative point are different from the traditional model. The waves on disconnector are obviously higher than it on transformer. The frequency compositions of VFTO which are obtained from Discrete Fourier Transformation (DFT) also have significant difference.
机译:数字仿真和实验比较用于确定GIS的组件参数,该组件也提供了一种动态电路模型。基于本文的电弧节能理论,研究了电弧再点火的物理过程。 Mayr-Schwarz Arc方程应用于建立电弧电阻模型的模型。在EMTP-ATP中建立了一种新的瞬态电路模型,其模拟了800kV GIS上的总线关闭充电电流。与传统的弧模型相比,Mayr-Schwarz架构可以更好地反映电弧再点​​火的物理变化,尤其是灭火过程的过程。与此同时,代表点的VFTO的幅度与传统模型不同。隔离开关上的波浪显着高于变压器。从离散傅里叶变换(DFT)获得的VFTO的频率组成也具有显着差异。

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