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Design of high-density transformers for high-frequency high-power converters.

机译:高频大功率转换器的高密度变压器设计。

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摘要

Moore's Law has been used to describe and predict the blossom of IC industries, so increasing the data density is clearly the ultimate goal of all technological development. If the power density of power electronics converters can be analogized to the data density of IC's, then power density is a critical indicator and inherent driving force to the development of power electronics. Increasing the power density while reducing or keeping the cost would allow power electronics to be used in more applications.;One of the design challenges of the high-density power converter design is to have high-density magnetic components which are usually the most bulky parts in a converter. Increasing the switching frequency to shrink the passive component size is the biggest contribution towards increasing power density. However, two factors, losses and parasitics, loom and compromise the effect. Losses of high-frequency magnetic components are complicated due to the eddy current effect in magnetic cores and copper windings. Parasitics of magnetic components, including leakage inductances and winding capacitances, can significantly change converter behavior. Therefore, modeling loss and parasitic mechanism and control them for certain design are major challenges and need to be explored extensively.;In this dissertation, the abovementioned issues of high-frequency transformers are explored, particularly in regards to high-power converter applications. Loss calculations accommodating resonant operating waveform and Litz wire windings are explored. Leakage inductance modeling for large-number-of-stand Litz wire windings is proposed. The optimal design procedure based on the models is developed.
机译:摩尔定律已被用来描述和预测集成电路产业的兴起,因此提高数据密度显然是所有技术发展的最终目标。如果可以将电力电子转换器的功率密度模拟为IC的数据密度,那么电力密度就成为电力电子发展的关键指标和内在驱动力。在降低或保持成本的同时提高功率密度将使功率电子器件可用于更多应用。高密度功率转换器设计的设计挑战之一是要使高密度磁性元件通常是体积最大的零件在转换器中。增加开关频率以缩小无源元件的尺寸是增加功率密度的最大贡献。但是,损失和寄生虫这两个因素影响并影响了效果。由于磁芯和铜绕组中的涡流效应,高频磁性元件的损耗变得复杂。磁性元件的寄生效应,包括漏感和绕组电容,会极大地改变转换器的性能。因此,对损耗和寄生机理进行建模以及对它们进行控制以进行某些设计是主要挑战,需要广泛研究。本文针对高频变压器的上述问题进行了探讨,特别是在大功率转换器应用方面。探索了适应谐振工作波形和李兹线绕组的损耗计算。提出了用于大量立兹导线绕组的漏电感建模。开发了基于模型的最佳设计程序。

著录项

  • 作者

    Shen, Wei.;

  • 作者单位

    Virginia Polytechnic Institute and State University.;

  • 授予单位 Virginia Polytechnic Institute and State University.;
  • 学科 Engineering Electronics and Electrical.
  • 学位 Ph.D.
  • 年度 2006
  • 页码 175 p.
  • 总页数 175
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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