整流器(神经网络)
电池充电器
功率因数
恒流
电气工程
电感
电池(电)
电压
电感器
功率(物理)
交流电源
热传导
电动汽车
工程类
材料科学
控制理论(社会学)
计算机科学
物理
随机神经网络
控制(管理)
量子力学
机器学习
人工智能
循环神经网络
人工神经网络
复合材料
作者
Bhim Singh,Radha Kushwaha
标识
DOI:10.1109/tia.2019.2951510
摘要
Conventional power factor correction (PFC) circuits in electric vehicle (EV) battery chargers have the efficiency limitation due to high conduction loss associated with a diode bridge rectifier (DBR) at the input. To mitigate this issue, a bridgeless (BL) single ended primary inductance converter (SEPIC) with improved power quality, is presented in this article. The input current shows a unity power factor operation over the entire charging duration. Due to elimination of DBR and the current conduction through relatively less number of devices, conduction losses are significantly reduced. This, in turn, improvises the charger efficiency as compared to conventional BL SEPIC converter. The overall performance of proposed charger is illustrated with the help of various operating modes, design equations, simulation-based performance and experimental validation under steady state as well as over wide fluctuations in ac mains voltage. The EV battery is charged at constant current/ constant voltage control mode, which provides satisfactory results for improved efficiency and inherent PFC, thus, improving overall performance of the charger.
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