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Harmonic Filter Analysis and Redesign for a Modern Steel Facility with Two Melt Furnaces Using Dedicated Capacitor Banks

机译:使用专用电容器组的两种熔化炉的谐波滤波器分析和重新设计

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This modern steel making facility relies on reactive compensation at the substation level in the form of harmonic filtering to support voltage for casting operations, and at the melt furnace level in the form of capacitor banks to support LMF operations. A history of harmonic filter failures at the substation, and intermittent capacitor unit failures at the melt furnace banks, culminated in a recent catastrophic failure of the filter reactor. This paper describes the analytical methods used to redesign the harmonic filter to achieve the desired level of compensation yet avoid future failure of the filter components. Field measurements showed the harmonic filter provided a low impedance path for harmonic currents produced during arcing of either or both melt furnace transformer resulting in overload of the filter reactor. Preliminary harmonic analysis enabled temporary detuning of the harmonic filter in the field to avoid this damaging resonance condition permitting steel making operations to continue while redesigning the filter. Detailed harmonic analysis and filter design considered a wide range of normal and emergency system conditions, especially the effects of extended line outages by the utility for reconductoring. Recommendations included specifications for the redesigned harmonic filter as well as changes to improve performance of the melt furnace capacitor banks.)
机译:这种现代钢制造工具依赖于谐波滤波形式的变电站水平的反应补偿,以支撑铸造操作的电压,以及电容器组形式的熔融炉水平以支持LMF操作。变电站谐波过滤器故障的历史,熔融炉库处的间歇电容器单元故障,最终在近期滤料反应器的灾难性故障中达到。本文介绍了用于重新设计谐波滤波器以实现所需补偿水平的分析方法,但避免了过滤器组件的未来失效。场测量显示谐波滤波器提供了在熔融炉变压器的电弧过程中产生的谐波电流的低阻抗路径,从而导致过滤器反应器过载。初步谐波分析使现场谐波滤波器暂时失去,以避免这种损坏的共振条件允许钢制操作在重新设计过滤器的同时继续。详细的谐波分析和过滤器设计被认为是广泛的正常和紧急系统条件,特别是通过电导体的效用来扩展线路中断的影响。建议包括重新设计的谐波滤波器的规格以及改善熔融炉电容器组的性能的变化。)

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