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A 98.3% Efficient GaN Isolated Bidirectional DC–DC Converter for DC Microgrid Energy Storage System Applications

机译:用于直流微电网储能系统的98.3%高效GaN隔离双向DC-DC转换器

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摘要

This paper presents a novel 400 to 12 V isolated bidirectional dc–dc converter based on a phase-shift-controlled-modified dual-active-bridge power stage. The proposed converter consists of a half-bridge and center tap with active clamp circuit, which has promising performance for low-voltage high-current applications. 650 V gallium-nitride high electron mobility transistors are used on the high voltage side to avoid issues encountered using Si superjunction MOSFETs in phase-shift-controlled-bidirectional power conversions. The operation principle and power transfer characteristic are obtained based on a time-domain analysis of the inductor current. Design methodology and criteria and converter's efficiency analysis are discussed. Both the analysis and experiments verify that the proposed converter is capable of achieving low power loss and high power density in soft-switching and hard-switching modes. Experimental results are presented for a 1-kW, 400 V-to-12 V dc–dc prototype converter operating at 100 kHz switching frequency. A power density of 30 W/in and a peak efficiency of 98.3% in a wide input/output voltage range are achieved.
机译:本文提出了一种新颖的400至12V隔离式双向dc-dc转换器,该转换器基于相移受控的双有源桥功率级。拟议的转换器由带有有源钳位电路的半桥和中心抽头组成,在低压大电流应用中具有令人鼓舞的性能。在高压侧使用650 V氮化镓高电子迁移率晶体管,以避免在相移控制双向功率转换中使用Si超结MOSFET遇到的问题。基于电感电流的时域分析获得工作原理和功率传输特性。讨论了设计方法和标准以及转换器的效率分析。分析和实验均证明,所提出的转换器能够在软开关和硬开关模式下实现低功耗和高功率密度。给出了在100kHz开关频率下工作的1kW,400V至12V dc-dc原型转换器的实验结果。在宽输入/输出电压范围内实现了30W / in的功率密度和98.3%的峰值效率。

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