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Design Optimization of Power Electronic Transformers in Traction Applications

机译:牵引应用中电力电子变压器的设计优化

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To increase efficiency and reduce weight of low frequency traction transformers (LFTs), many studies have been dedicated to the study and design of power electronic transformers (PETs). Most of these studies have focussed on 16.7Hz traction systems and a few on 50/60Hz systems. PETs offer several degrees of freedom to the designer such as configuration and modulation of power stages, switching frequency, magnetic material etc., which are evaluated based on given specifications to meet the objectives of maximum power density and efficiency. This paper presents a detailed analysis of efficiency and power density of each power stage in a PET with respect to its design parameters. A design methodology is outlined to replace an LFT with an optimally designed PET. To elucidate the design process, the considered case is a 4.16MW transformer supplied by a 25KV, 60Hz catenary for a Shinkansen series-700. The configuration of the PET considered is of the indirect type with a cascaded H-bridge as the AC/DC stage interfacing the catenary and a set of parallelly connected DC/DC converters at the output. The best obtained efficiency is 97.7% with a weight of 1.69 tonnes which is significantly higher than that of the LFT.
机译:为了提高效率和减少低频牵引变压器(LFT)的重量,许多研究致力于电力电子变压器(宠物)的研究和设计。这些研究中的大多数都集中在16.7Hz的牵引系统和50 / 60Hz系统上的一些。宠物向设计人员提供多项自由度,例如电源级的配置和调制,切换频率,磁性材料等,基于给定的规范评估,以满足最大功率密度和效率的目标。本文提出了一种关于其设计参数的PET中每个功率级的效率和功率密度的详细分析。概述了设计方法,以用最佳设计的PET取代LFT。为了阐明设计过程,所考虑的案例是4.16MW的变压器,由25kV,60Hz裂缝为Shinkansen系列-700提供。所考虑的PET的配置是具有级联H桥的间接型作为AC / DC级接合电衔接和在输出处的一组平行连接的DC / DC转换器。最好的效率为97.7%,重量为1.69吨,显着高于LFT。

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