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New Configuration of Traction Converter With Medium-Frequency Transformer Using Matrix Converters

机译:具有矩阵变换器的中频变压器牵引变换器的新配置

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This paper presents a new configuration of a main traction converter with a medium-frequency transformer (MFT) using matrix converters intended for locomotives and particularly for suburban units supplied by a 25-kV/50-Hz and/or 15-kV/16.7-Hz ac electrification system. Single-phase matrix converters are employed in the primary medium-voltage converter which is directly connected to the ac trolley line. The output of the primary ac/ac converter supplies the primary side of the MFT. The proposed MFT-based topology of the traction converter replaces the bulky main line transformer found on board railway vehicles. Particularly in countries with a catenary of 15 kV/16.7 Hz, very low catenary frequency results in huge and heavy traction transformers. The developed topology is a power electronics solution that considerably reduces weight and losses in a traction propulsion system. The proposed converter configuration with cascaded matrix converters on the primary side of the MFT presents a new research direction in the field of traction converters with MFTs. This paper describes in detail the proposed power circuit and the control of the traction converter. The behavior of the traction converter configuration has been analyzed using simulations and experimental tests carried out on a developed low-voltage laboratory prototype of a traction converter with a rated power of 4 kVA. Based on extensive simulation and experimental study, this paper reviews the benefits, drawbacks, and constraints of the developed traction converter configuration.
机译:本文介绍了一种新的主​​牵引力转换器配置,其中有一个中频变压器(MFT),它使用的矩阵转换器用于机车,特别是用于25 kV / 50 Hz和/或15 kV / 16.7 Hz交流电系统。单相矩阵转换器用于直接连接到交流电车线路的初级中压转换器。初级交流/交流转换器的输出为MFT的初级侧供电。所提出的基于MFT的牵引变流器拓扑结构取代了铁路车辆上笨重的干线变压器。特别是在悬链线为15 kV / 16.7 Hz的国家/地区中,悬链线频率非常低,会导致牵引变压器变大而笨重。所开发的拓扑结构是一种电力电子解决方案,可显着降低牵引推进系统的重量和损失。提出的在MFT初级侧具有级联矩阵转换器的转换器配置为具有MFT的牵引转换器领域提出了新的研究方向。本文详细介绍了提出的电源电路和牵引变流器的控制。牵引转换器配置的行为已通过仿真和实验测试进行了分析,该实验是在额定功率为4 kVA的牵引转换器的低压实验室原型上进行的。在广泛的仿真和实验研究的基础上,本文回顾了已开发的牵引变流器配置的优缺点和局限性。

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