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Effects of V2G reactive power compensation on the component selection in an EV or PHEV bidirectional charger

机译:V2G无功功率补偿对EV或PHEV双向充电器中组件选择的影响

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Electric vehicles (EVs) and plug-in hybrid electric vehicles (PHEVs) are becoming a part of the electric grid day by day. Chargers for these vehicles have the ability to make this interaction better for the consumer and for the grid. Vehicle to grid (V2G) power transfer has been under research for more than a decade because of the large energy reserve of an electric vehicle battery and the potential of thousands of these connected to the grid. Rather than discharging the vehicle batteries, reactive power compensation in particular is beneficial for both consumers and for the utility. However, certain adverse effects or requirements of reactive power transfer should be defined before a design stage. To understand the dynamics of this operation, this study investigates the effect of reactive power transfer on the charger system components, especially on the dc-link capacitor and the battery.
机译:电动汽车(EV)和插电式混合动力汽车(PHEV)日益成为电网的一部分。这些车辆的充电器具有为消费者和电网更好地进行这种交互的能力。车辆到电网(V2G)的电力传输已经研究了十多年,这是因为电动汽车电池具有巨大的能量储备,并且有成千上万的电池并网潜力。无功功率补偿不仅使车辆电池放电,而且对用户和公用事业都有利。但是,应在设计阶段之前定义无功功率传输的某些不利影响或要求。为了了解这种操作的动态性,本研究调查了无功功率传输对充电器系统组件的影响,尤其是对直流母线电容器和电池的影响。

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