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Dual Active Bridge Converter with PWM Control In Solid State Transformer Application.

机译:具有PWM控制的双路有源桥式转换器在固态变压器中的应用。

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摘要

For the solid-state transformer (SST) application, a three-stage configuration consisting of a PWM rectifier based AC/DC stage, a dual active bridge (DAB) converter based DC/DC stage and a PWM inverter based DC/AC stage offers several advantages. For single-phase SST, the instantaneous input and load power seen by the DC/DC stage varies from zero to twice the load average power at double the line frequency. Traditionally, with phase-shift control, large DAB DC link capacitors are used to handle the instantaneous power variation of the load, with the DAB converter processing only the load average power resulting in better soft-switching range and consequently high efficiency. However, the large electrolytic capacitors required adversely affect the power density and the reliability of SST.;In this thesis, a PWM control is used for the DAB converter in SST, which extends the ZVS range of DAB and allows the DAB converter to handle the pulsating power while maintaining/improving efficiency. The impact of the output capacitance of switches with PWM control is discussed for practical implementation. A 40kHz, 500W DAB converter is designed and built, and the experimental results proves that the DAB converter with PWM control in SST can achieve comparable efficiency while the DC link capacitors of SST can be reduced to a value that electrolytic capacitors are not required.
机译:对于固态变压器(SST)应用,三级配置提供了基于PWM整流器的AC / DC级,基于双有源桥(DAB)转换器的DC / DC级和基于PWM逆变器的DC / AC级组成的三级配置。几个优点。对于单相SST,DC / DC级看到的瞬时输入功率和负载功率在零倍于两倍于平均线频的负载平均功率范围内变化。传统上,通过相移控制,大型DAB直流链路电容器用于处理负载的瞬时功率变化,而DAB转换器仅处理负载平均功率,从而产生更好的软开关范围,从而提高效率。然而,所需的大型电解电容器会对SST的功率密度和可靠性产生不利影响。本文将PWM控制用于SST中的DAB转换器,从而扩展了DAB的ZVS范围,并允许DAB转换器处理在保持/提高效率的同时脉动功率。讨论了采用PWM控制的开关输出电容的影响,以进行实际实现。设计并制造了一个40kHz,500W的DAB转换器,实验结果证明,在SST中具有PWM控制的DAB转换器可以达到相当的效率,而SST的DC链路电容器可以减小到不需要电解电容器的值。

著录项

  • 作者

    Nan, Chenhao.;

  • 作者单位

    Arizona State University.;

  • 授予单位 Arizona State University.;
  • 学科 Engineering Electronics and Electrical.
  • 学位 M.S.
  • 年度 2012
  • 页码 83 p.
  • 总页数 83
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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