设计一种车载充电器,为多辆电动汽车高效充电

Q1 Engineering
Jyoti Gupta;Rakesh Maurya;Sabha Raj Arya
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引用次数: 2

摘要

介绍了一种可对多辆电动汽车进行高效充电的车载充电器。它已经发展成为单输入双输出(SIDO)集成升压-单端初级电感转换器(SEPIC)反激转换器,与同等规格的传统充电器相比,具有成本效益,可靠性和更高的效率。拟议的系统包括一个额外的调节输出终端,除了一个现有的终端充电的电动汽车电池的4轮车,它可以用来充电另一个电动汽车电池,最好是2轮车。在控制技术的帮助下,电网对车辆(G2V)工作模式在恒压(CV)/恒流(CC)充电时获得了统一的功率因数运行。通过数学建模分析,在Matlab/Simulink环境下开发了该系统,并在dSPACE-1104实时仿真器上对结果进行了验证。该系统分别为容量为400 V 40 A·h和48 V 52 A·h的4轮和2轮电动汽车的电池充电。为了保证充电器的安全可靠运行,研究了其在不同工作模式和大范围电源电压变化下的性能。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Designing an On-board Charger to Efficiently Charge Multiple Electric Vehicles
An on-board charger for efficiently charging multiple battery-operated electric vehicles (EVs) is introduced. It has evolved as a single-input dual-output (SIDO) integrated boost-single ended primary inductor converter (SEPIC) fly-back converter, offering cost-effectiveness, reliability, and higher efficiency compared to conventional chargers with equivalent specifications. The proposed system includes an additional regulated output terminal, in addition to an existing terminal for charging the EV battery of a 4-wheeler, which can be used to charge another EV battery, preferably a 2-wheeler. With the aid of control techniques, unity power factor operations are obtained during constant-voltage (CV)/constant-current (CC) charging for the grid-to-vehicle (G2V) operating mode. Using mathematical modelling analysis, the proposed system is developed in a Matlab/Simulink environment, and the results are validated in a real-time simulator using dSPACE-1104. The proposed system is employed for charging the batteries of two EVs with capacities of 400 V, 40 A · h and 48 V, 52 A · h for the 4-wheeler and 2-wheeler, respectively. Its performance is investigated under different operating modes and over a wide range of supply voltage variations to ensure safe and reliable operation of the charger.
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来源期刊
Chinese Journal of Electrical Engineering
Chinese Journal of Electrical Engineering Energy-Energy Engineering and Power Technology
CiteScore
7.80
自引率
0.00%
发文量
621
审稿时长
12 weeks
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