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Three Phase High Power Integrated Battery Charger for Plugin Electric Vehicles

机译:插电式电动汽车用三相大功率集成电池充电器

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Battery chargers for plugin electric vehicles can be costly and add to the weight and volume of the vehicle when designed to be on-board. Conversely, integrated battery chargers not only re-use the already available components on-board but also provide a higher charging power capability than their dedicated counterparts. Such chargers use the traction motor's windings as input filter when connected to the three-phase supply. Surface mounted permanent magnet motors have not been used for integrated battery chargers for the apparent risk of rotor movement while charging. This paper demonstrates the use of a surface mounted permanent magnet motor to charge the battery while identifying the limiting factors of its implementation. The maximum torque (70Nm) developed on the rotor while charging is calculated using an FEA model of the motor and is found to be within the limits that a vehicle can withstand. Efficiencies up to 97% with an acceptable THD was achieved with a scaled down power version of the charger.
机译:用于插电式电动汽车的电池充电器价格昂贵,并且在设计成车载时会增加汽车的重量和体积。相反,集成式电池充电器不仅可以重新使用板上已经可用的组件,而且还提供比专用充电器更高的充电功率。当连接到三相电源时,此类充电器将牵引电机的绕组用作输入滤波器。未将表面安装的永磁电动机用于集成式电池充电器,因为在充电时转子显然有运动的危险。本文演示了使用表面安装的永磁电动机为电池充电,同时确定了其实施的限制因素。充电时转子上产生的最大扭矩(70Nm)是使用电动机的FEA模型计算得出的,并且发现该扭矩在车辆可以承受的范围内。缩小功率版本的充电器可实现高达97%的THD效率。

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