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A PFC Based EV Battery Charger Using a Bridgeless Isolated SEPIC Converter

机译:使用无桥隔离式SEPIC转换器的基于PFC的EV电池充电器

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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.
机译:电动汽车(EV)电池充电器中的常规功率因数校正(PFC)电路由于与输入处的二极管桥式整流器(DBR)相关的高传导损耗而具有效率限制。为了缓解这个问题,本文提出了一种具有改进电源质量的无桥(BL)单端初级电感转换器(SEPIC)。输入电流在整个充电期间显示出统一的功率因数操作。由于消除了DBR和通过相对较少数量的设备进行的电流传导,因此传导损耗大大降低。与传统的BL SEPIC转换器相比,这反过来改善了充电器的效率。借助各种工作模式,设计方程式,基于仿真的性能以及在稳态以及交流电源电压波动较大的情况下进行的实验验证,可以说明拟议充电器的总体性能。 EV电池以恒定电流/恒定电压控制模式充电,这为提高效率和固有的PFC提供了令人满意的结果,从而改善了充电器的整体性能。

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