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Circulating current minimization for dual three phase motor integrated battery charger

机译:双三相电机集成电池充电器循环电流最小化

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The use of six-phase motors is an attractive option for electric and hybrid electric vehicles due to its modularity. Demand for high power density and lower costs for electric traction drives has led to the idea of integrating the battery charging function into the traction drive. When the main battery for dual motor type electric and hybrid electric vehicles is being charged, the equivalent power converter system is two converters that act as rectifiers and are connected in parallel. Feeding these converters from the AC grid with interleaved discontinuous PWM schemes can result in the appearance of a significant amount of circulating current flowing between the converters. Such circulating current increases converter component stresses and reduces battery-charging efficiency. In the paper, a PWM scheme based on discontinuous PWM methods is proposed to mitigate this circulating current. The proposed scheme does not require additional passive elements and maintains the benefits of discontinuous PWM. Simulation and experimental results are presented to validate the proposed scheme.
机译:使用六相电机是由于其模块化的电动和混合动力电动车辆的有吸引力的选择。对电力密度的高功率密度和较低的电力牵引驱动成本导致将电池充电功能集成到牵引驱动器中的想法。当用于双电机类型电动和混合动力电动汽车的主电池被充电时,等效功率转换系统是用作整流器的两个转换器,并联连接。通过交织的不连续PWM方案从AC电网馈送这些转换器,可以在转换器之间流动的大量循环电流的外观。这种循环电流会增加转换器部件应力并降低电池充电效率。本文提出了一种基于不连续PWM方法的PWM方案来减轻该循环电流。该方案不需要额外的被动元素并保持不连续PWM的益处。提出了仿真和实验结果以验证拟议方案。

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