基于单级级联h桥拓扑的电力电子牵引变压器

Adnan Farooq Khan, S. Nag, Bhim Singh
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引用次数: 0

摘要

电力电子变压器(PET)技术在中高功率转换系统特别是牵引系统中具有广阔的应用前景。用于铁路牵引应用的传统电力电子牵引变压器或固态变压器(PETT/SST)具有两阶段运行:交流-直流,由基于级联h桥(CHBs)的硬开关有源前端(AFE)执行,然后是隔离的dc-dc转换器和连接到牵引电机的三相逆变器。本文提出了一种新颖的多层体系结构,每个模块采用单级转换拓扑,将AC-DC和DC-DC级合并为统一的单级体系结构。模块在输入端串联,形成多级拓扑结构。该变换器采用正弦脉宽调制(SPWM)和相移控制,这使得拓扑结构在电网侧的单位功率因数(UPF)下工作,具有双向潮流。所提出的单级拓扑减少了每个模块中的交换机数量,从而提高了可靠性。此外,所有开关操作使用零电压开关(ZVS)。本文概述了单级模块的工作原理和分析,这是所提出的拓扑结构的基础。此外,转换器的额定功率为4.5 kW,并通过仿真验证了转换器的运行。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Single Stage Cascaded H-bridge Topology Based Power Electronic Traction Transformer
Power electronic transformer (PET) technology shows great promise for medium to high power conversion systems especially in traction systems. Conventional power electronic traction transformer or solid-state transformer (PETT/SST) for railway traction application has two stage operation: ac-dc that is performed by hard switched active front end (AFE) based on cascaded H-bridges (CHBs) followed by isolated dc-dc converter and a three-phase inverter connecting to the traction motor. This paper presents a novel multilevel architecture that employs a single-stage conversion topology for every module, combining the AC-DC and DC-DC stages into a unified single-stage architecture. The modules are connected in series at the input to form a multilevel topology. The converter is controlled using sine pulse width modulation (SPWM) and phase shift control, which enables the topology to operate at unity power factor (UPF) on the grid side, with bidirectional power flow. The proposed single-stage topology results in a reduction of the switch count in each module, which enhances reliability. Additionally, all switches operate using zero voltage switching (ZVS). The paper outlines the operating principle and analysis of the single-stage module, which forms the basis of the proposed topology. Additionally, the converter is designed for a 4.5 kW rating and the operation of the converter is validated through simulation.
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