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Harmonic analysis and filter bank design for a new rectifier for a Cold Roll Mill

机译:新型冷轧机整流器的谐波分析和滤波器组设计

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The trend in industry to replace motor-generator sets with static rectifiers often results in soft voltage and harmonic distortion issues which must be corrected after the fact. The distribution system not only experiences increased reactive load with the added rectifier transformers but generally experiences a loss in reactive power when the synchronous motor is removed. In the Cold Roll Mill of this large steel-processing facility, theses concerns were addressed proactively early in the planning stages with the design of a stepped harmonic filter to be installed with a new static rectifier. This paper describes the harmonic analysis of the new rectifier and the design of the harmonic filter to correct harmonics and support voltage. The harmonic analysis identified a unique parallel resonance below the filter tuning and quantified the likelihood of the rectifier exciting this resonance. The filter bank design incorporated a small modification to the filter to mitigate this concern. Additionally, this paper presents the analysis of the possible interaction of the harmonic filter with a electrically nearby advanced reactive compensator.
机译:工业上用静态整流器代替电动发电机组的趋势经常导致软电压和谐波畸变问题,必须在事后予以纠正。配电系统不仅会因增加整流变压器而增加无功负载,而且在移除同步电动机时通常会损失无功功率。在这个大型钢厂的冷轧机中,这些问题在计划阶段的早期就得到了积极解决,该问题是通过设计要安装新的静态整流器的步进式谐波滤波器来解决的。本文介绍了新型整流器的谐波分析以及用于校正谐波和支持电压的谐波滤波器的设计。谐波分析确定了滤波器调谐下方的独特并联谐振,并量化了整流器激发该谐振的可能性。滤波器组设计对滤波器进行了小的修改,以减轻这种担忧。此外,本文还对谐波滤波器与附近的电气高级无功补偿器之间可能的相互作用进行了分析。

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