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Voltage flicker prediction for two simultaneously operated AC arc furnaces

机译:两个同时运行的交流电弧炉的电压闪变预测

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摘要

An EMTP-based arc furnace model was developed for evaluation of flicker concerns associated with supplying a large integrated steel mill as they go from one to two furnace operation and as system changes are implemented that will affect the short circuit capacity at the 230 kV power supply substation. The model includes a dynamic arc representation which is designed to be characteristic of the initial portions of the melt cycle when the arc characteristics are the most variable (worst flicker conditions). The flicker calculations are verified using previous measurements with one furnace operation. Flicker simulations were then performed to evaluate a variety of different possible system strengths with both one and two furnaces in operation. The primary flicker measure used for this study is the unweighted RMS value of the fluctuation envelope, expressed as a percentage of the RMS line-to-ground voltage magnitude.
机译:开发了基于EMTP的电弧炉模型,用于评估与大型集成钢厂从一台运行到两台炉运行以及系统变更实施相关的闪烁问题,这将影响230 kV电源的短路容量变电站。该模型包括一个动态电弧表示,当电弧特性变化最大(最坏的闪烁条件)时,该动态电弧表示设计为熔体循环初始部分的特性。使用先前的测量结果和一次炉子操作,可以验证闪变计算。然后使用一台和两台熔炉,进行闪变仿真,以评估各种不同的可能系统强度。这项研究使用的主要闪烁指标是波动包络的未加权RMS值,表示为RMS线对地电压幅度的百分比。

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