首页> 外文期刊>Emerging and Selected Topics in Power Electronics, IEEE Journal of >Novel Reactive Power Control Strategy Based on Constant DC-Capacitor Voltage Control for Reducing the Capacity of Smart Charger for Electric Vehicles on Single-Phase Three-Wire Distribution Feeders
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Novel Reactive Power Control Strategy Based on Constant DC-Capacitor Voltage Control for Reducing the Capacity of Smart Charger for Electric Vehicles on Single-Phase Three-Wire Distribution Feeders

机译:基于恒定直流电容器电压控制的新型无功控制策略,用于降低单相三线配电馈线上的电动汽车智能充电器的容量

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摘要

This paper proposes a novel reactive power control strategy to reduce the capacity of the previously proposed smart charger for electric vehicles (EVs) on single-phase three-wire distribution feeders. The proposed reactive power control strategy is based on the constant dc-capacitor voltage control of the grid-connected pulsewidth-modulated rectifier. Any calculation blocks of the load-side active current are not needed. Thus, we offer the simplest reactive power control strategy. The basic principle of the proposed reactive power control strategy is discussed in detail, and then confirmed by a digital computer simulation using the PSIM software. A prototype experimental model is constructed and tested. Experimental result demonstrates that balanced source currents with a power factor of 0.9, which is an acceptable value in Japanese home appliances, are obtained on the secondary side of the pole-mounted distribution transformer during the battery charging operation in the EVs, reducing the capacity of the smart charger by 36% as compared with that of the smart charger with the previously proposed control strategy.
机译:本文提出了一种新颖的无功功率控制策略,以减少先前提出的单相三线配电馈线上用于电动汽车(EV)的智能充电器的容量。提出的无功功率控制策略基于并网脉宽调制整流器的恒定直流电容器电压控制。不需要负载侧有功电流的任何计算模块。因此,我们提供了最简单的无功功率控制策略。对所提出的无功功率控制策略的基本原理进行了详细讨论,然后通过使用PSIM软件的数字计算机仿真对其进行了确认。构建并测试了原型实验模型。实验结果表明,在电动汽车的电池充电操作过程中,在杆装配电变压器的次级侧获得了功率因数0.9(在日本家用电器中是可接受的值)的平衡电源电流,从而降低了电动汽车的容量。与之前提出的控制策略的智能充电器相比,智能充电器的性能降低了36%。

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