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Three-phase AC-to-DC soft-switching HF transformer isolated converters with power factor correction and low harmonic distortion.

机译:具有功率因数校正和低谐波失真的三相交流到直流软开关高频变压器隔离转换器。

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摘要

This thesis presents new configurations for three-phase AC-to-DC single-stage, softswitched, high frequency (HF) transformer isolated converters with power factor correction (PFC) and low harmonic distortion. Four different configurations are presented. Topology of all these four configurations is based on integration of a front-end DCM boost with a soft switching HF transformer isolated DC-to-DC PWM converter with fixed frequency. DCM operation of the front-end boost provides natural PFC with low total harmonic distortion (THD) and the DC-to-DC HF transformer isolated soft switching PWM converter with an appropriate gating scheme provides output voltage regulation.; A double switch AC-to-DC converter is presented in Chapter 2. Due to unsymmetrical gating scheme, DC blocking capacitors are required to avoid transformer saturation. To reduce this problem, a new gating scheme is proposed in Chapter 3, which can be used in full bridge converters providing ZVS. This gating scheme is first used in a DC-to-DC bridge converter. In the next three chapters, this new gating scheme is applied to three different types of single-stage AC-to-DC boost integrated fixed-frequency bridge converters. These configurations are: (i) boost integrated single inductor linear current DC-to-DC PWM bridge converter, (ii) boost integrated series resonant DC-to-DC bridge converter and (iii) boost integrated parallel resonant DC-to-DC bridge converter.; The steady state operation of each converter and modes of operation are explained with equivalent circuits for each interval of HF cycle. The general solutions for all the intervals are derived and design curves are obtained based on steady state relations. The design procedure is illustrated with a design example. Detailed PSPICE simulation results and experimental results obtained from a laboratory prototype model are given for all the converters to verify the theory and analysis. THD of the line current without any complex control circuit remains in a reasonable range of 8% to 13% for the total range of operation. Input line current waveforms for all suggested converters shows a low harmonic distortion similar to a single 3-Φ DCM boost. The difference would be in increase or decrease of DC bus voltage in each case, which can affect THD of the boost converter. Three switches in the full bridge converter operate with zero-voltage switching (ZVS) while the main switch operates with ZVS at full load, minimum line voltage and with ZVT at lower loads conditions. Soft switching of all the switches helps in lower loss. Chapter 6 presents the contributions of this thesis, summarizes the advantages and disadvantages of each configuration and gives some suggestions for future work.
机译:本文提出了具有功率因数校正(PFC)和低谐波失真的三相AC-DC单级软开关高频(HF)变压器隔离转换器的新配置。提出了四种不同的配置。所有这四种配置的拓扑结构均基于前端DCM升压与固定频率的软开关HF变压器隔离式DC-DC PWM转换器的集成。前端升压的DCM操作可提供具有低总谐波失真(THD)的自然PFC,具有适当门控方案的DC-DC HF变压器隔离式软开关PWM转换器可提供输出电压调节。第2章介绍了一个双开关AC-DC转换器。由于非对称门控方案,需要使用隔直电容来避免变压器饱和。为了减少这个问题,在第3章中提出了一种新的门控方案,该方案可用于提供ZVS的全桥转换器。该选通方案首先在DC-DC桥式转换器中使用。在接下来的三章中,这种新的门控方案将应用于三种不同类型的单级AC-DC Boost集成固定频率桥式转换器。这些配置是:(i)升压集成单电感器线性电流DC-to-DC PWM桥式转换器,(ii)升压集成串联谐振DC-DC桥式转换器和(iii)升压集成并联谐振DC-DC桥式转换器转换器。对于每个HF周期间隔,用等效电路解释了每个转换器的稳态操作和操作模式。推导了所有区间的一般解,并根据稳态关系得出了设计曲线。设计过程以设计示例说明。给出了所有转换器的详细的PSPICE仿真结果和从实验室原型模型获得的实验结果,以验证理论和分析。对于整个工作范围,没有任何复杂控制电路的线路电流的总谐波失真(THD)保持在8%至13%的合理范围内。所有建议的转换器的输入线电流波形都显示出低谐波失真,类似于单个3-ΦDCM升压。差异分别是直流母线电压的升高或降低,这可能会影响升压转换器的THD。全桥转换器中的三个开关在零电压开关(ZVS)下运行,而主开关在满负载下以ZVS运行,最小线路电压,在较低负载条件下以ZVT运行。所有开关的软开关有助于降低损耗。第6章介绍了本论文的贡献,总结了每种配置的优缺点,并为以后的工作提出了一些建议。

著录项

  • 作者

    Hamdad, Fatemeh-Soheila.;

  • 作者单位

    University of Victoria (Canada).;

  • 授予单位 University of Victoria (Canada).;
  • 学科 Engineering Electronics and Electrical.
  • 学位 Ph.D.
  • 年度 1999
  • 页码 259 p.
  • 总页数 259
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 无线电电子学、电信技术;
  • 关键词

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