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SiC Based On-Board EV Power-Hub with High-Efficiency DC Transfer Mode through AC Port for Vehicle-to-Vehicle Charging

机译:基于SIC基板EV电源集线器,具有通过AC端口的高效直流传输模式,用于车辆到车辆充电

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This paper is focused on a high-density, bi-directional, 6.6 kW EV power-hub, designed to operate in four distinct modes: 1) Grid-to-Vehicle (G2V), 2) Vehicle-to-Grid (V2G), 3) Vehicle-to-House (V2H), and 4) the more recent Vehicle-to-Vehicle (V2V) operating mode. This study also investigates sending DC power through a conventional 240 V_(RMS) Level-2 AC power port, with all the associated ratings and constraints from the AC design, in order to achieve higher power transfer and efficiency for V2V operation. Using a digital Hysteretic Current Mode Control (HCMC) scheme, the efficiency and loss distribution of four operating modes are analyzed: 1) dc-ac Boundary Conduction Mode (BCM), 2) dc-ac Continuous Conduction Mode (CCM)/BCM hybrid, 3) dc-dc BCM, and 4) dc-dc CCM. The AC design achieves a peak efficiency of 96.6% and an average THD of 3.2%. The peak efficiency of the power-hub is increased from 96.6% to 98.3%, by operating in DC transfer mode for V2V operation, thus increasing the power capability by 50%. Finally, a new low-frequency output voltage commutation scheme is proposed to reduce the peak junction temperature of MOSFETs when operating in V2V dc-dc mode.
机译:本文专注于高密度,双向,6.6千瓦eV电力集线器,设计成以四种不同的方式运行:1)网格到车辆(G2V),2)车辆到网格(V2G) 3)车辆到房屋(V2H)和4)最近的车辆到车辆(V2V)的操作模式。本研究还通过传统的240V_(RMS)电平-2交流电源端口调查发送DC电力,具有来自AC设计的所有相关的额定值和约束,以实现更高的V2V操作的功率传输和效率。使用数字滞回电流模式控制(HCMC)方案,分析了四种操作模式的效率和损耗分布:1)DC-AC边界导电模式(BCM),2)DC-AC连续导通模式(CCM)/ BCM杂种,3)DC-DC BCM和4)DC-DC CCM。 AC设计实现了96.6%的峰值效率,平均THD为3.2%。通过在V2V操作的直流传输模式下操作,功率集线器的峰值效率从96.6%增加到98.3%,从而将功率能力提高50%。最后,提出了一种新的低频输出电压换向方案,以减小在V2V DC-DC模式下操作时MOSFET的峰值结温。

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