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Design of fast charging technique for electrical vehicle charging stations with grid-tied cascaded H-bridge multilevel converters

机译:并网级联H桥多电平转换器的电动汽车充电站快速充电技术设计

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To compete with gas stations, electrical vehicle charging stations should be able to charge batteries as fast as possible. In this paper, a fast charging technique for a grid-tied, cascaded H-bridge (CHB) converter based charging station is developed. A controller is designed to achieve constant current-constant voltage (CC-CV) charging for all of the cells of the CHB converter. As proven in this paper, to achieve fast charging, the effects of internal resistance and polarization parameters of battery should be compensated. To reach this goal, the internal resistance and polarization parameters of battery are estimated based on the initial fast measurements before formal battery charging. The estimated parameters can increase the constant current charging duration for Li-Ion batteries so the charging speed is improved. Experiments are conducted on a charging station which is based on a 7-level grid-tied CHB converter to validate the proposed fast charging technique.
机译:为了与加油站竞争,电动车辆充电站应该尽可能快地对电池充电。在本文中,开发了一种快速充电技术,用于网格连接的级联H桥(CHB)的基于充电站。控制器旨在为CHB转换器的所有单元实现恒定的电流恒压(CC-CV)充电。如本文证实,为了实现快速充电,应补偿电池内阻和极化参数的影响。为了实现这一目标,基于正式电池充电前的初始快速测量估计电池的内阻和偏振参数。估计的参数可以增加锂离子电池的恒定电流充电持续时间,从而提高充电速度。实验在基于7级网格连接CHB转换器的充电站上进行,以验证所提出的快速充电技术。

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