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Reducing capacitances of DC capacitors in smart charger for electric vehicles in single-phase three-wire distribution feeders with sinusoidal charging and discharging for Li-ion batteries

机译:减少正弦充电和放电的单相三线配电馈线中电动汽车智能充电器中直流电容器的电容

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This paper discusses reduction of capacitances of dc capacitors in the previously proposed smart charger (SC) with a sinusoidal charging-discharging lithium-ion battery for electric vehicles in single-phase three-wire distribution feeders. The dc-capacitor current of the three-leg pulse-width modulated (PWM) rectifier, which is included in the SC, is detected, and then added to the reference value of the battery-charging or - discharging current for a bidirectional dc-dc converter. Addition of the detected dc-capacitor current to the reference value for the dc-dc converter sinks the voltage ripples in the dc capacitors of both the PWM rectifier and bidirectional converter. This results in a substantial reduction in the capacitances of the dc capacitors. Simulation results demonstrate that balanced source currents with a unity power factor are achieved, reducing the capacitances of the dc capacitors in the previously proposed SC.
机译:本文讨论了在单相三线配电馈线中电动汽车用正弦充电-放电锂离子电池在先前提出的智能充电器(SC)中降低直流电容器电容的方法。检测SC中包含的三桥臂脉宽调制(PWM)整流器的直流电容器电流,然后将其添加到电池充电或-双向dc-放电电流的参考值中直流转换器。将检测到的直流电容器电流与dc-dc转换器的参考值相加,可以吸收PWM整流器和双向转换器的dc电容器中的电压纹波。这导致直流电容器的电容大大降低。仿真结果表明,可以实现具有统一功率因数的平衡电源电流,从而减小了先前提出的SC中直流电容器的电容。

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