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Isolated DC-DC Converter utilizing GaN power device for Automotive Application

机译:汽车用GaN功率器件隔离DC-DC变换器

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This paper presents an isolated step-sown DC-DC converter using GaN power device for automotive applications. The works for a power supply from a high voltage main battery with 200V to low voltage auxiliary battery with 13.6V in hybrid electric vehicle. A LLC converter is known as isolated DC-DC converter with high-efficiency. However, when input and/or output voltage considerably fluctuates, efficiency of a LLC resonant converter becomes worse. In order to solve this problem, a DC-DC boost-up converter to mitigate efficiency deterioration for the input and/or output voltage fluctuation is added to a LLC resonant converter. Generally speaking, an additional circuit, the boost-up chopper in this case, also deteriorates the total system efficiency. To avoid the efficiency degradation, discontinuous current mode control and GaN power devices are applied to the boost-up chopper. The DC-DC boost-up converter experimentally achieves 99.03% of conversion efficiency at nominal output so that it has no effect on the total system efficiency. Even though adding a DC-DC boost-up chopper to the LLC resonant converter, a power density expected to 10 W/cc.
机译:本文介绍了一种用于汽车应用的采用GaN功率器件的隔离步进式DC-DC变换器。在混合动力电动汽车中,工作于从200V高压主蓄电池到13.6V低压辅助蓄电池的电源。LLC变换器被称为高效隔离DC-DC变换器。然而,当输入和/或输出电压大幅波动时,LLC谐振变换器的效率会变差。为了解决这个问题,在LLC谐振变换器中增加了一个DC-DC升压变换器,以缓解输入和/或输出电压波动引起的效率下降。一般来说,在这种情况下,一个额外的电路,即升压斩波器,也会降低整个系统的效率。为了避免效率下降,升压斩波器采用了间断电流模式控制和GaN功率器件。实验证明,DC-DC升压变换器在额定输出下的转换效率达到99.03%,因此对系统总效率没有影响。即使在LLC谐振变换器中添加DC-DC升压斩波器,功率密度也有望达到10 W/cc。

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