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Power Electronic Transformer based Three-Phase PWM AC Drives.

机译:基于电力电子变压器的三相PWM交流变频器。

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摘要

A Transformer is used to provide galvanic isolation and to connect systems at different voltage levels. It is one of the largest and most expensive component in most of the high voltage and high power systems. Its size is inversely proportional to the operating frequency. The central idea behind a power electronic transformer (PET) also known as solid state transformer is to reduce the size of the transformer by increasing the frequency. Power electronic converters are used to change the frequency of operation. Steady reduction in the cost of the semiconductor switches and the advent of advanced magnetic materials with very low loss density and high saturation flux density implies economic viability and feasibility of a design with high power density. Application of PET is in generation of power from renewable energy sources, especially wind and solar. Other important application include grid tied inverters, UPS e.t.c.;In this thesis non-resonant, single stage, bi-directional PET is considered. The main objective of this converter is to generate adjustable speed and magnitude pulse width modulated (PWM) ac waveforms from an ac or dc grid with a high frequency ac link. The windings of a high frequency transformer contains leakage inductance. Any switching transition of the power electronic converter connecting the inductive load and the transformer requires commutation of leakage energy. Commutation by passive means results in power loss, decrease in the frequency of operation, distortion in the output voltage waveform, reduction in reliability and power density.;In this work a source based partially loss-less commutation of leakage energy has been proposed. This technique also results in partial soft-switching. A series of converters with novel PWM strategies have been proposed to minimize the frequency of leakage inductance commutation. These PETs achieve most of the important features of modern PWM ac drives including 1) Input power factor correction, 2) Common-mode voltage suppression at the load end, 3) High quality output voltage waveform (comparable to conventional space vector PWM modulated two level inverter) and 4) Minimization of output voltage loss, common-mode voltage switching and distortion of the load current waveform due to leakage inductance commutation. All of the proposed topologies along with the proposed control schemes have been analyzed and simulated in MATLABSimulink. A hardware prototype has been fabricated and tested. The simulation and experimental results verify the operation and advantages of the proposed topologies and their control.
机译:变压器用于提供电流隔离并以不同的电压水平连接系统。它是大多数高压和大功率系统中最大,最昂贵的组件之一。它的大小与工作频率成反比。电力电子变压器(PET)(也称为固态变压器)背后的中心思想是通过增加频率来减小变压器的尺寸。功率电子转换器用于改变工作频率。半导体开关成本的不断降低以及损耗密度和饱和磁通密度非常低的先进磁性材料的问世,意味着经济可行性和高功率密度设计的可行性。 PET的应用是利用可再生能源(尤其是风能和太阳能)发电。其他重要的应用包括并网逆变器,UPS e.t.c .;本文中考虑了非谐振,单级,双向PET。该转换器的主要目的是从具有高频交流链路的交流或直流电网中生成可调节速度和幅度的脉宽调制(PWM)交流波形。高频变压器的绕组包含漏感。连接电感负载和变压器的功率电子转换器的任何切换过渡都需要换能泄漏能量。通过无源方式进行换向会导致功率损耗,工作频率降低,输出电压波形失真,可靠性和功率密度降低。;在这项工作中,提出了一种基于能量的漏电能量的部分无损耗换向方法。该技术还导致部分软切换。已经提出了一系列具有新颖PWM策略的转换器,以最小化漏感换向的频率。这些PET具有现代PWM交流驱动器的大多数重要功能,包括1)输入功率因数校正,2)负载端的共模电压抑制,3)高质量的输出电压波形(可与传统的空间矢量PWM调制的两电平相比)逆变器)和4)最小化输出电压损耗,共模电压切换以及由于漏感换向引起的负载电流波形的失真。所有建议的拓扑以及建议的控制方案均已在MATLABSimulink中进行了分析和仿真。硬件原型已被制造和测试。仿真和实验结果验证了所提出的拓扑及其控制的操作和优势。

著录项

  • 作者

    Basu, Kaushik.;

  • 作者单位

    University of Minnesota.;

  • 授予单位 University of Minnesota.;
  • 学科 Alternative Energy.;Energy.;Engineering Electronics and Electrical.
  • 学位 Ph.D.
  • 年度 2012
  • 页码 125 p.
  • 总页数 125
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

  • 入库时间 2022-08-17 11:43:43

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