Power Electrical and Electronic Systems Research Group, Escuela de Ingenierías Industriales, Universidad de Extremadura, Avda. de Elvas, s/n, Badajoz 06006, Spain.
Sensors (Basel). 2011;11(10):9313-26. doi: 10.3390/s111009313. Epub 2011 Sep 28.
The expected increase in the penetration of electric vehicles (EV) and plug-in hybrid electric vehicles (PHEV) will produce unbalanced conditions, reactive power consumption and current harmonics drawn by the battery charging equipment, causing a great impact on the power quality of the future smart grid. A single-phase semi-fast electric vehicle battery charger is proposed in this paper. This ac on-board charging equipment can operate in grid-to-vehicle (G2V) mode, and also in vehicle-to-grid (V2G) mode, transferring the battery energy to the grid when the vehicle is parked. The charger is controlled with a Perfect Harmonic Cancellation (PHC) strategy, contributing to improve the grid power quality, since the current demanded or injected has no harmonic content and a high power factor. Hall-effect current and voltage transducers have been used in the sensor stage to carry out this control strategy. Experimental results with a laboratory prototype are presented.
预计电动汽车 (EV) 和插电式混合动力电动汽车 (PHEV) 的渗透率将会增加,这将导致电池充电设备产生不平衡的条件、无功功率消耗和电流谐波,对未来智能电网的电能质量产生重大影响。本文提出了一种单相半快速电动汽车充电器。这种交流车载充电设备可以在电网到车辆 (G2V) 模式下运行,也可以在车辆到电网 (V2G) 模式下运行,当车辆停放时将电池能量传输到电网。该充电器采用完美谐波消除 (PHC) 策略进行控制,有助于提高电网电能质量,因为所要求或注入的电流没有谐波含量且功率因数高。霍尔效应电流和电压传感器已用于传感器级以执行此控制策略。介绍了实验室原型的实验结果。