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首页> 外文期刊>IEEE Transactions on Power Electronics >A Bidirectional Isolated DC–DC Converter as a Core Circuit of the Next-Generation Medium-Voltage Power Conversion System
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A Bidirectional Isolated DC–DC Converter as a Core Circuit of the Next-Generation Medium-Voltage Power Conversion System

机译:双向隔离式DC-DC转换器作为下一代中压功率转换系统的核心电路

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摘要

This paper describes a bidirectional isolated dc-dc converter considered as a core circuit of 3.3-kV/6.6-kV high-power-density power conversion systems in the next generation. The dc-dc converter is intended to use power switching devices based on silicon carbide (SiC) and/or gallium nitride, which will be available on the market in the near future. A 350-V, 10-kW and 20 kHz dc-dc converter is designed, constructed and tested. It consists of two single-phase full-bridge converters with the latest trench-gate insulated gate bipolar transistors and a 20-kHz transformer with a nano-crystalline soft-magnetic material core and litz wires. The transformer plays an essential role in achieving galvanic isolation between the two full-bridge converters. The overall efficiency from the dc-input to dc-output terminals is accurately measured to be as high as 97%, excluding gate drive and control circuit losses from the whole loss. Moreover, loss analysis is carried out to estimate effectiveness in using SiC-based power switching devices. Loss analysis clarifies that the use of SiC-based power devices may bring a significant reduction in conducting and switching losses to the dc-dc converter. As a result, the overall efficiency may reach 99% or higher
机译:本文介绍了双向隔离式DC-DC转换器,该转换器被视为下一代3.3 kV / 6.6 kV高功率密度功率转换系统的核心电路。 dc-dc转换器旨在使用基于碳化硅(SiC)和/或氮化镓的功率开关器件,它们将在不久的将来上市。设计,构造和测试了350V,10kW和20kHz的DC-DC转换器。它由两个带最新沟槽栅极绝缘栅双极晶体管的单相全桥转换器,以及一个具有纳米晶体软磁材料磁芯和绞合线的20 kHz变压器组成。变压器在实现两个全桥转换器之间的电气隔离方面起着至关重要的作用。从直流输入到直流输出端子的总体效率可精确测量为高达97%,从整个损耗中排除了栅极驱动和控制电路损耗。此外,进行了损耗分析以评估使用SiC基功率开关器件时的有效性。损耗分析表明,使用基于SiC的功率器件可以显着降低DC-DC转换器的传导和开关损耗。结果,整体效率可能达到99%或更高

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