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Lower electric stress ZCS-PWM superbuck converter for electric vehicle DC charging spot

机译:用于电动汽车直流充电点的低电应力ZCS-PWM超级降压转换器

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To promote the wide acceptance of electric vehicles (EVs), the charging facilities should satisfy with some basic requirements, such as high efficiency, low harmonic pollution, long lifetime, low cost, and ease of bulk construction. Therefore, a novel EV charging facility - dc charging spot and a lower stress zero current switch-pulse width modulation (ZCS-PWM) Superbuck converter suitable for output stage of the former are proposed in this paper. The proposed converter features ZCS of all power switches at entire input voltage and load range, lower voltage stress benefiting from passive clamping circuit. Furthermore, this converter has no additional current stress in the main switch in comparison to hard-switching converter counterpart. In the paper, operation principles, constraint to achieve the ZCS soft communication and electric stress of all power switches have been analyzed in detail. Then, the state-space averaging approach is used to estimate steady-state character of the ZCS-PWM Superbuck converter in continuous current mode (CCM). Finally, a charger prototype rated l.8 kW, operating at 80kHz is constructed for a 320V/50Ah Lithium-iron-phosphate propulsion battery. The validity of the proposed novel EV charging facility and the ZCS technique are verified by the experimental results.
机译:为了促进电动汽车的广泛接受,充电设施应满足一些基本要求,例如高效率,低谐波污染,长寿命,低成本以及易于批量建造。因此,本文提出了一种适用于前者输出级的新型EV充电设备-直流充电点和低应力零电流开关脉冲宽度调制(ZCS-PWM)Superbuck转换器。建议的转换器在整个输入电压和负载范围内具有所有电源开关的ZCS,无源钳位电路可降低电压应力。此外,与硬开关转换器相比,该转换器在主开关中没有额外的电流应力。本文详细分析了工作原理,实现ZCS软通信的约束条件以及所有电源开关的电应力。然后,使用状态空间平均方法来估算连续电流模式(CCM)下ZCS-PWM Superbuck转换器的稳态特性。最后,为320V / 50Ah磷酸铁锂动力电池构建了一个额定功率为1.8 kW,工作频率为80kHz的充电器原型。实验结果验证了所提出的新型电动汽车充电设施和ZCS技术的有效性。

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