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A Study on High-Current Rectifier Systems With Mitigated Time-Varying Magnetic Field Generation at AC Input and DC Output Busbars

机译:交流输入和直流输出母线上产生时变磁场得到缓解的大电流整流器系统的研究

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摘要

This paper investigates occupational exposure to time-varying magnetic field generation in high-power rectifier systems. Two different kinds of high-power rectifier systems rated for 25 kA are modeled and analyzed. The performance is compared and evaluated on the basis of exposure guidelines from the International Commission on Non-Ionizing Radiation Protection (ICNIRP). In order to focus on the qualitative effect of rectifier operation, the mechanical structure of the current-carrying conductors is simplified as an infinite long busbar model and low- frequency harmonic contents up to 65 kHz are considered. A thyristor rectifier generates a significant amount of low-frequency magnetic field harmonic contents, both at the ac and dc sides of the rectifier, infringing the limit from ICNIRP. The multilevel IGCT-type rectifier has almost negligible field generation from the ac input side and smaller harmonic contents in the dc load side, complying with ICNIRP guidelines. This remarkable advantage of multilevel rectifier-IGCT type can lead to a simpler site layout design for installation and cost-effective compliance to the guidelines of occupational exposure against the magnetic field.
机译:本文研究了大功率整流器系统中时变磁场产生的职业暴露。对额定功率为25 ratedkA的两种不同类型的大功率整流器系统进行了建模和分析。根据国际非电离辐射防护委员会(ICNIRP)的辐照准则对性能进行比较和评估。为了关注整流器工作的定性效果,简化了载流导体的机械结构,因为它采用无限长的母线模型,并考虑了高达65 kHz的低频谐波含量。晶闸管整流器在整流器的交流和直流侧都产生大量的低频磁场谐波成分,从而超出了ICNIRP的限制。符合ICNIRP准则,多级IGCT型整流器从交流输入侧产生的磁场几乎可以忽略不计,而在直流负载侧的谐波含量较小。多级整流器-IGCT型的显着优势可以简化安装现场布局设计,并符合成本效益地遵守职业性磁场暴露准则。

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