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Integration of electromagnetic passive components in DPS front-end DC/DC converter - a comparative study of different integration steps

机译:DPS前端DC / DC转换器中电磁无源组件的集成-不同集成步骤的比较研究

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In most of the power electronics converters, the overall footprint and profile of the whole system are in large part determined by the footprint and profile of the passive components and the interconnections between them. Integrated magnetics, planar magnetics and passive integration techniques have been topics of research for the past few years to reduce the parts count, footprint and profile of the passive components, hence increasing the power density of the whole converter. This becomes especially prominent in the distributed power system (DPS) front-end converters, as the trend is moving from 2U (1U=1.75 inches) standard toward 1U standard. This paper presents a comparative study of the integration steps of passive components of an asymmetrical half bridge circuit (AHBC) for DPS front-end DC/DC converter application. Four AHBC converters using discrete passive components, nonplanar integrated magnetic components, planar integrated magnetic components and passive integrated power electronic module (IPEM), respectively, are constructed and tested. Comparisons are made from the viewpoints of volume, profile, efficiency, EMI and thermal performances of the four converters. The experimental result shows that the passive IPEM, which integrates all the passive components, has much higher power density, lowest profile, lower temperature rise and similar efficiency.
机译:在大多数电力电子转换器中,整个系统的整体占地面积和轮廓大部分由被动组件的占地面积和轮廓和它们之间的互连确定。综合磁性,平面磁性和被动集成技术已经是过去几年的研究主题,以减少被动部件的零件数,占地面积和轮廓,因此增加了整个转换器的功率密度。这在分布式电力系统(DPS)前端转换器中尤为突出,因为该趋势从2U(1U = 1.75英寸)标准朝向1U标准移动。本文介绍了对DPS前端DC / DC转换器应用的不对称半桥电路(AHBC)无源部件的集成步骤的比较研究。使用离散无源元件,非平面集成磁性元件,平面集成磁性元件和无源集成电力电子模块(IPEM)的四个AHBC转换器进行了构建和测试。从四个转换器的体积,配置文件,效率,EMI和热性能的观点来看比较。实验结果表明,集成所有无源元件的无源IPEM具有更高的功率密度,最低型材,较低的升温和相似效率。

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