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Control of SiC-based dual active bridge in high power three phase on-board charger of EVs

机译:电动汽车大功率三相车载充电器中基于SiC的双有源桥的控制

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This paper presents a control algorithm of active power flow between traction battery and grid in a dual active bridge converter (DAB). Here, DAB is a part of a three phase 10kW bidirectional on-board charger in electric vehicles (EVs). It is an isolated interface to the battery placed after a three phase power factor correction (PFC) stage. 1200V rated SiC JFETs in the H-bridge at the DC link side of DAB enable operation at high voltage values of the DC link (above 500V) with high switching frequencies in the range from 50 to 150 kHz. Both high converter efficiency and simplified, compact converter design can be achieved thanks to the application of these wide band gap (WBG) devices. Furthermore, the control algorithm is presented to achieve the fast reference tracking even in the case when, due to simplicity of sensing, only average values of currents of both battery and DC link are being regulated.
机译:本文提出了双有源桥式变换器(DAB)中牵引电池与电网之间的有功功率流控制算法。在这里,DAB是电动汽车(EV)中三相10kW双向双向车载充电器的一部分。它是在三相功率因数校正(PFC)阶段之后放置的电池的隔离接口。在DAB的DC链路侧的H桥中,额定1200V的SiC JFET可在DC链路的高电压值(500V以上)下以50至150 kHz的高开关频率工作。这些宽带隙(WBG)器件的应用可以实现高转换器效率和简化,紧凑的转换器设计。此外,提出了一种控制算法,即使在由于感应的简单性而仅调节电池和直流母线电流平均值的情况下,也可以实现快速参考跟踪。

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