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首页> 外文期刊>IEEE Transactions on Industrial Electronics >Fast and Robust Predictive Current Controller for Flicker Reduction in DC Arc Furnaces
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Fast and Robust Predictive Current Controller for Flicker Reduction in DC Arc Furnaces

机译:快速,稳健的预测电流控制器,用于减少直流电弧炉中的闪烁

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摘要

A fast and robust predictive current controller for reduction of flicker caused by dc electric arc furnaces (EAFs) supplied by thyristor converters is presented in this paper. During normal EAF operation, large active- and reactive-power variations can occur at the point of furnace connection, causing unwanted variations of network voltage and correspondingly a flicker phenomenon. The main cause of this phenomenon are electrode short-circuits with large current swings, which occur during the so-called bore-in period of the furnace cycle. The proposed controller reduces the flicker caused mainly by reactive-power variations during the electrode short-circuits by providing fast and robust predictive control of the arc current without relying on the accurate arc model. The obtained simulation and experimental results demonstrate the ability of the presented current controller to effectively compensate for the electrode short-circuits, thereby enabling a reduction of the unwanted fluctuations of the reactive power, which are the main cause of the induced flicker. The simulation results show that the proposed controller can reduce the induced flicker by up to 50%, compared to the traditionally used system with PI current controller. Also, the controller is robust to the asymmetries and the abrupt changes of the network voltage.
机译:本文提出了一种快速而强大的预测电流控制器,用于减少晶闸管转换器提供的直流电弧炉(EAF)引起的闪烁。在正常的电弧炉操作过程中,在熔炉连接点可能会出现较大的有功功率和无功功率变化,从而导致电网电压发生不必要的变化,并相应地产生闪烁现象。造成这种现象的主要原因是大电流摆动的电极短路,这发生在所谓的熔炉循环钻孔期间。所提出的控制器通过在不依赖精确电弧模型的情况下提供对电弧电流的快速而可靠的预测控制,减少了电极短路期间主要由无功功率变化引起的闪烁。获得的仿真和实验结果证明了所提出的电流控制器有效补偿电极短路的能力,从而能够减少无功功率的不必要波动,无功波动是引起闪烁的主要原因。仿真结果表明,与传统上使用PI电流控制器的系统相比,该控制器可以将感应闪烁降低多达50%。同样,该控制器对于网络电压的不对称性和突变也具有鲁棒性。

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