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Prediction of lightning impulse voltage induced breakdown in vacuum interrupters

机译:预测真空中断器中的闪电脉冲电压诱导击穿

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In this work, we investigate the Lightning Impulse Voltage LIV breakdown probability of different medium-voltage Vacuum Interrupter (VI) tubes manufactured by Siemens; for this investigation, the Voltage Holding Prediction Model (VHPM) has been employed. The study focuses on results of systematic LIV experiments (up to 250 kV) carried out in the Siemens VI factory on different VI configurations and aimed at validating the VHPM under impulsive voltage and in well-controlled conditions. In order to assess the predictive capability of the VHPM, the model has been applied to a tube configuration with unknown voltage breakdown characteristics exploiting Weibull parameters obtained from the analysis of tube configurations with well-known LIV features. Experiment and simulation showed fair agreement concerning the overall VI breakdown probability as a function of the voltage applied to the contact electrodes.
机译:在这项工作中,我们研究了西门子制造的不同中压真空中断器(VI)管的雷电脉冲电压崩溃概率;对于该研究,已经采用了电压保持预测模型(VHPM)。该研究侧重于在不同VI配置中在西门子VI工厂进行的系统LIV实验(高达250 kV)的结果,并旨在在冲动的电压和良好控制的条件下验证VHPM。为了评估VHPM的预测能力,该模型已应用于具有未知电压击穿特性的管结构,从而利用从众所周知的LIV特征的管配置中获得的威布尔参数。实验和仿真表明,作为施加到接触电极的电压的函数的整体VI击穿概率的公平协议。

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