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A New Flicker Contribution Tracing Method Based on Individual Reactive Current Components of Multiple EAFs at PCC

机译:一种新的闪烁贡献跟踪方法,基于PCC多重EAF的各个反应电流分量

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In this paper, a new flicker contribution tracing method has been proposed to determine the individual flicker contributions of multiple electric arc furnace (EAF) loads to the flicker measured at the point of common coupling (PCC). The proposed method decouples the flicker contribution of the interconnected electricity system from the individual contributions of the loads connected to the measured PCC, using the individual current variations of the loads, and the estimated short-circuit system impedance. It has been shown that individual flicker contributions of the loads are mainly caused by the variation of their reactive current components. Since the computational complexity of the proposed method is low, it is appropriate for on-line applications. The algorithm can easily be embedded on a power quality analyzer, which can be employed as a flicker-contribution-meter. Field data collected at a PCC supplying multi-EAF plants have been used to verify the validity of the proposed method in a successful manner.
机译:本文已经提出了一种新的闪烁贡献跟踪方法,以确定多个电弧炉(EAF)负载到在公共耦合点(PCC)的闪烁中的单独闪烁贡献。所提出的方法使用负载的各个电流变化和估计的短路系统阻抗,将互连的电力系统与连接到测量的PCC的负载的各个贡献中的闪烁贡献。已经表明,负载的个体闪烁贡献主要由其反应电流组分的变化引起。由于所提出的方法的计算复杂性低,因此适用于在线应用。该算法可以很容易地嵌入电能质量分析仪上,可用作闪烁贡献仪。在供应多EAF工厂的PCC电源收集的现场数据已被用于以成功的方式验证所提出的方法的有效性。

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