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Torque ripple suppression of brushless DC motor drives using an alternating two-phase and three-phase conduction mode

机译:使用交替的两相和三相导通模式,扭矩纹波抑制无刷直流电动机驱动器

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摘要

Commutation torque ripple is an important factor affecting the performance of brushless DC (BLDC) motor drives. In order to suppress this torque ripple, an alternating conduction control strategy between the two-phase and three-phase conduction mode has been proposed in this study. During the non-commutation periods, the conventional two-phase conduction mode is selected to drive the BLDC motor. While during the commutation period, the commutation torque ripple is reduced by employing an alternating two-phase and three-phase conduction mode. By calculating the duty cycle of the three-phase conduction mode, which indicates whether the rate of change in current in the incoming and outgoing phase is equal during the commutation interval, the commutation torque ripple is effectively reduced, while the current in the non-commutated phase is maintained constant. Simulation and experimental results show that the proposed method can suppress the commutation torque ripple efficiently, particularly at high rotational speeds of the motor.
机译:换向扭矩纹波是影响无刷直流(BLDC)电机驱动器性能的重要因素。为了抑制这种扭矩脉动,本研究提出了两相和三相传导模式之间的交替导通控制策略。在非换向周期期间,选择传统的两相传导模式以驱动BLDC电动机。虽然在换向周期期间,通过采用交替的两相和三相传导模式来减少换向扭矩纹波。通过计算三相导通模式的占空比,这指示输入和输出相位中的电流变化率是否相等,换向转矩脉动有效地减小,而非换向阶段保持不变。仿真和实验结果表明,该方法可以有效地抑制换向扭矩脉动,特别是在电动机的高旋转速度下。

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