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Power Electronic Transformers for AC-AC and AC-DC Conversion with Reduced Number of Switches.

机译:减少开关数量的用于AC-AC和AC-DC转换的电力电子变压器。

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摘要

In this research, a novel reduced-switch Power Electronic Transformer is proposed for three-phase power conversion (three-phase AC to AC as well as three-phase AC to DC). The goal of this project is to reduce the weight and size of the power converter by replacing the low-frequency transformers with high-frequency transformers (HFTs). The novelty of these proposed topologies is that they have only two controlled switches on the primary side of the high-frequency transformers. Additionally, these switches operate at 50% duty ratio, hence they are easy to control. Pulse Width Modulation (PWM) control is only necessary in the converters on the secondary side of the HFT. The modulation strategies proposed in this work achieve nearly Zero Current Switching (ZCS) for these two primary switches.;In the proposed three-phase AC to AC Power Electronic Transformer, a Matrix Converter (MC) is employed on the secondary side of the transformer. Matrix converter with nine four-quadrant switches is a 'more-silicon' and nearly capacitor-less solution for AC to AC conversion. This single-stage AC-AC converter without any electrolytic capacitors translates to higher reliability and efficiency. High-frequency transformers have finite leakage inductance, hence, any switching in the primary or secondary of the transformer requires commutation of the transformer inductive currents. This problem of leakage energy commutation and the required protection are studied in detail in this thesis. Other features of this converter are bi-directional power flow and power factor correction.;The second Power Electronic Transformer is proposed for three-phase AC to DC power conversion. This converter operates on the Dual Active Bridge (DAB) principle wherein the transformer leakage inductance is used for power transfer. Hence, this converter does not suffer from problems associated with leakage energy commutation and additional snubber circuits are not required for this converter. The proposed modulation provides the advantages of unity power factor on the AC side, galvanic isolation and bi-directional power flow capability.;Both these PETs have been analyzed and simulated. Laboratory prototypes have been built and tested to verify the advantages of the proposed PETs.
机译:在这项研究中,提出了一种新颖的降压型电力电子变压器,用于三相功率转换(三相AC到AC以及三相AC到DC)。该项目的目标是通过将低频变压器替换为高频变压器(HFT)来减小功率转换器的重量和尺寸。这些提议的拓扑的新颖之处在于,它们在高频变压器的初级侧只有两个受控开关。此外,这些开关的占空比为50%,因此易于控制。脉宽调制(PWM)控制仅在HFT次级侧的转换器中是必需的。这项工作中提出的调制策略为这两个初级开关实现了几乎零电流开关(ZCS)。在拟议的三相交流到交流电力电子变压器中,在变压器的次级侧采用了矩阵转换器(MC) 。具有九个四象限开关的矩阵转换器是“多硅”和几乎无电容器的交流到交流转换解决方案。这种不带电解电容器的单级AC-AC转换器可提高可靠性和效率。高频变压器具有有限的漏感,因此,变压器初级或次级的任何开关都需要换向变压器感应电流。本文详细研究了漏电换向问题和所需的保护措施。该转换器的其他功能是双向功率流和功率因数校正。;提出了第二种功率电子变压器,用于三相交流到直流功率转换。该转换器以双有源桥(DAB)原理工作,其中变压器漏感用于功率传输。因此,该转换器不会遭受与泄漏能量换向相关的问题,并且该转换器不需要额外的缓冲电路。所提出的调制方式具有交流侧的统一功率因数,电流隔离和双向潮流能力等优点。两种PET均已进行了分析和仿真。已经建立了实验室原型并进行了测试,以验证提出的PET的优势。

著录项

  • 作者

    Castelino, Gysler Fatima.;

  • 作者单位

    University of Minnesota.;

  • 授予单位 University of Minnesota.;
  • 学科 Engineering Electronics and Electrical.
  • 学位 Ph.D.
  • 年度 2013
  • 页码 156 p.
  • 总页数 156
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

  • 入库时间 2022-08-17 11:41:29

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