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The state of charge balancing techniques for electrical vehicle charging stations with cascaded H-bridge multilevel converters

机译:具有级联H桥多级转换器的电动车辆充电站的充电平衡技术

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In this paper, two state-of-charge (SOC) balancing techniques are proposed for an electrical vehicle charging station which is based on a grid-tied cascaded H-bridge (CHB) multilevel converter. The first proposed technique uses the redundant states of the CHB converter to generate different AC voltages to balance the SOCs of the CHB cells. For the first proposed technique, the active power injected to the CHB converter is calculated and the optimal switching state that can regulate the SOCs of batteries is designed before switching transitions. In the second proposed technique, the information of AC input current is employed to design the switching states at each quarter of the period. As shown in this paper, the two proposed techniques can regulate the SOCs of the multilevel converter much faster than two conventional techniques in literature without increasing cost or complexity of the converter. This can increase the battery charging speed on the grid-tied converter. The experiments are conducted on a 7-level CHB converter to validate the two proposed techniques.
机译:在本文中,提出了两种充电状态(SOC)平衡技术,用于电动车辆充电站,该电动车辆充电站是基于网格绑定的级联H桥(CHB)多级转换器。第一个提出的技术使用CHB转换器的冗余状态来生成不同的AC电压以平衡CHB单元的SOC。对于第一个提出的技术,计算注入CHB转换器的有功功率,并且在切换转换之前设计了可以调节电池SOC的最佳切换状态。在第二所提出的技术中,使用AC输入电流的信息来在周期的每个季度设计切换状态。如本文所示,两种所提出的技术可以在不增加转换器的成本或复杂性的情况下比文献中的两个传统技术更快地调节多级转换器的SOC。这可以提高电池栓转换器上的电池充电速度。实验是在7级CHB转换器上进行的,以验证两种提出的技术。

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