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Electric vehicle battery charging algorithm using PMSM windings and an inverter as an active rectifier

机译:采用pmsm绕组和逆变器作为有源整流器的电动汽车电池充电算法

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摘要

A major setback for large scale electric vehicle market expansion compared to their internal combustion competitors consists in their high price and low driving range. One way of reducing the cost, dimensions and mass of electric vehicles is to eliminate the dedicated AC/DC converter used for battery charging. Alternatively, charging could be done using the motor windings as grid side inductors and controlling the inverter to operate as an active boost rectifier. The challenge in this approach is the unequal phase inductances which depend on the rotor position. Another problem appears when the battery gets discharged below the peak of the grid voltage, typically if the vehicle has not been used for a longer period of time. To avoid high currents that could damage the battery, a voltage suppression mode is introduced for safe depleted battery charging. This paper proposes and analyzes an integrated charger control algorithm to charge the battery through a permanent magnet synchronous machine (PMSM) windings.
机译:与内燃竞争对手相比,大规模电动汽车市场扩张的主要挫折在于其高价格和低行驶里程。降低电动汽车成本,尺寸和质量的一种方法是取消用于电池充电的专用AC / DC转换器。或者,可以使用电动机绕组作为电网侧电感器并控制逆变器作为有源升压整流器进行充电。这种方法面临的挑战是取决于转子位置的不相等的相位电感。当电池放电到低于电网电压的峰值时出现另一个问题,通常是在较长时间不使用车辆的情况下。为避免高电流可能损坏电池,引入了电压抑制模式以对耗尽的电池进行安全充电。本文提出并分析了一种集成的充电器控制算法,该算法通过永磁同步电机(PMSM)绕组为电池充电。

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