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Conception d'un convertisseur DC/DC à très haute fréquence pour l'alimentation d'une cellule radar, contributions à son intégration

机译:用于为雷达单元供电的超高频DC / DC转换器的设计,为其集成做出了贡献

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摘要

This thesis report deals with the issue of integration of isolated DC-DC converters operating at low power high frequency and high efficiency. To begin with, the particular environment of this converter is presented. This is the field radar avionics power supply, for which electrical, mechanical, EMC specifications are hard. Therefore, this part is a starting point for the converter specifications. The bellowing study details the choice of conversion structure that seems best for both, the environment but also specifications. On the other hand, this paper discusses the feasibility of co-sintering process for the realization of magnetic components. This components.which are essential to realized such of converter. It follows the selection and implementation of a ferromagnetic ceramic material specific to our application. This step led to the characterization of a model of evolution for magnetic losses tacking into account the magnetic induction amplitude and the operating frequency. The next step is the implementation of a tools of constrained optimization sizing for magnetic components such as transformers and resonance inductors. These elements are composed of our ferromagnetic ceramic suitable for 3MHz as witching frequency. However, one of the most critical points of this study proves to driver of the power switches. The driver requires a development of an original structure without which efficiency for 3MHz converter couldn't exceed 40% to 50%. Several patents results of this structure, as the particular converter regulation mode. In conclusion, this report presents the realized prototype and the very encouraging results that we have been obtained. A critical eye is focused on this functional achieving to open on the prospects for highly integrated co-sintered converter based on this thesis.
机译:本论文报告涉及在低功率高频和高效率下工作的隔离式DC-DC转换器的集成问题。首先,介绍了此转换器的特定环境。这是现场雷达航空电子电源,其电气,机械,EMC规范都很严格。因此,这部分是转换器规格的起点。这份详尽的研究详细介绍了对于环境和规范都最合适的转换结构选择。另一方面,本文讨论了共烧结工艺对磁性元件实现的可行性。该组件对于实现这种转换器至关重要。它遵循针对我们的应用的铁磁陶瓷材料的选择和实施。该步骤导致表征了考虑到磁感应幅度和工作频率的磁损耗演化模型。下一步是实施针对变压器和谐振电感器等磁性元件的约束优化尺寸确定工具。这些元件由我们的铁磁陶瓷组成,适合于3MHz作为控制频率。但是,这项研究的最关键点之一是对电源开关的驱动器进行了证明。该驱动器需要开发一种原始结构,如果没有这种结构,则3MHz转换器的效率不能超过40%至50%。作为特定的转换器调节模式,该结构获得了多项专利。总之,本报告介绍了已实现的原型以及我们获得的令人鼓舞的结果。对此,人们非常关注这一功能性实现,从而为基于本论文的高度集成的共烧结转换器开辟了前景。

著录项

  • 作者

    Jarrousse Jean-Michel;

  • 作者单位
  • 年度 2008
  • 总页数
  • 原文格式 PDF
  • 正文语种 fr
  • 中图分类

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