首页> 外文会议>Annual IEEE Applied Power Electronics Conference and Exposition;APEC 2013 >Arc stability control of high power thyristor rectifier system in DC arc furnace
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Arc stability control of high power thyristor rectifier system in DC arc furnace

机译:直流电弧炉大功率晶闸管整流系统的电弧稳定性控制

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Fundamental features of the arc stability in DC arc furnace of 720V/100kA/72MW have been investigated. Cassie-Mayr arc model has been employed and applied for the target dc arc furnace. In order to characterize the parameters of Cassie-Mayr arc model and the behavior of unstable arc dynamics, the advanced arc simulations of magneto-hydrodynamics (MHD) has been performed. From the results of MHD simulation, dc arc dynamic resistance is proposed to be an effective arc stability function reflecting the instability of dynamic arc behavior. A control strategy to regulate the arc stability function is also proposed in this paper. The simulation and experimental result confirm the usefulness of proposed dynamic arc resistance as arc stability function along with the active control strategy. The proposed arc stability function can be regarded as an effective criterion for the overall power conversion system to maintain highly stable arcing operation leading to better productivity and reliability in a dc arc furnace.
机译:研究了720V / 100kA / 72MW直流电弧炉电弧稳定性的基本特征。 Cassie-Mayr电弧模型已被采用并应用于目标直流电弧炉。为了表征Cassie-Mayr电弧模型的参数和不稳定电弧动力学的行为,已进行了磁流体动力学(MHD)的高级电弧模拟。从MHD仿真的结果来看,直流电弧动态电阻被认为是反映动态电弧行为的不稳定性的有效电弧稳定性函数。本文还提出了一种控制电弧稳定性函数的控制策略。仿真和实验结果证实了提出的动态电弧电阻作为电弧稳定函数以及主动控制策略的有效性。提出的电弧稳定性函数可以视为整个功率转换系统保持高电弧稳定性的有效标准,从而提高直流电弧炉的生产率和可靠性。

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