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An Integrated Motor-Drive and Battery-Charging System Based on Split-Field-Winding Doubly Salient Electromagnetic Machine

机译:基于双绕组双凸极电磁机的集成电机驱动和电池充电系统

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摘要

In this paper, an integrated motor-drive and battery-charging (IMB) system with a doubly salient electromagnetic machine (DSEM) is proposed to be implemented for electric vehicles. In the driving mode, the front-end dc/dc converter is employed to boost the battery voltage to improve the speed range and acceleration ability of the DSEM. The field windings distribution of a 12/10-pole DSEM is arranged for the constant self-inductance, and adopted as the inductance of the front-end dc/dc converter to eliminate the traditional filter inductance and excitation loss of the machine. In the charging mode, the windings of DSEM could be exploited as the filter inductances to obtain the unity power factor operation and constant current charging ability. The simulations and experiments have been accomplished to verify the feasibility of the independent field current control method for the proposed IMB system.
机译:本文提出了一种具有双凸极电磁机(DSEM)的集成式电动机驱动和电池充电(IMB)系统,该系统将用于电动汽车。在驱动模式下,前端dc / dc转换器用于提高电池电压,以改善DSEM的速度范围和加速能力。为了保持恒定的自感,安排了12/10极DSEM的励磁绕组分布,并将其用作前端dc / dc转换器的电感,以消除传统的滤波器电感和电机的励磁损耗。在充电模式下,DSEM的绕组可以用作滤波电感,以获得统一的功率因数操作和恒定电流充电能力。仿真和实验已经完成,以验证所提出的IMB系统的独立励磁电流控制方法的可行性。

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