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Speed sensorless electric vehicle propulsion system using hybrid FOC-DTC induction motor drive

机译:使用混合焦点-DTC感应电动机驱动的无传感器电动汽车推进系统

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This paper describes a control scheme of speed sensorless hybrid field oriented and direct torque control of induction motor for electric vehicle (EV). EV requires fast torque response and high efficiency of the drive. The operating flux of the motor is chosen optimally for losses minimization and good dynamic response. The drive performance is studied for acceleration, braking and flux-weakening (above the rated speed). A control scheme for robust flux-weakening operation of motor drive is adopted. The basic idea is to adjust the flux reference on the basis of the q-axis stator current error, thus determining a spontaneous flux weakening. Furthermore, a loss-model-based controller (LMC) is applied to optimize the induction motor drive. Simulation results show that the proposed DTC is able to follow the reference speed with a reasonable dynamic and relatively low error.
机译:本文介绍了电动车辆电动机(EV)感应电动机的速度无传感器混合磁场的控制方案和直接扭矩控制。 EV需要快速扭矩响应和高效率的驱动器。最佳地选择电机的操作通量以损失最小化和良好的动态响应。研究了驱动性能,用于加速,制动和助熔剂(额定速度​​以上)。采用用于电动机驱动器的鲁棒助熔操作的控制方案。基本思想是根据Q轴定子电流误差调节磁通参考,从而确定自发性磁通量削弱。此外,应用基于损失模型的控制器(LMC)以优化感应电动机驱动器。仿真结果表明,所提出的DTC能够采用合理的动态且相对较低的误差遵循参考速度。

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