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Commutation Torque Ripple Reduction of Brushless DC Motor in Braking Operation

机译:制动操作中无刷直流电动机换向转矩纹波的减小

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In this paper, the commutation torque ripple is studied in the brushless DC motor (BLDCM) braking operation. As the phase currents flow in the reversed directions in the braking operation, the current circuits in the braking operation are different from those in the motor operation. For this reason, it is found that the commutation torque ripple can be reduced in the speed range from the rated speed to zero just by the common braking pulse width modulation strategies, where the three-phase modulation is not needed. However, it is impossible in motor operation. Under the common braking pulse width modulation strategies, the speed ranges where commutation torque ripple can be reduced are derived and compared. Based on the analysis of these speed ranges, a simple braking method is proposed. With this method, the BLDCM can be slowed down without commutation torque ripple in the whole braking process from the rated speed to zero. Experiment results verify the effectiveness of the method and the correctness of the theory.
机译:本文研究了无刷直流电动机(BLDCM)制动操作中的换向转矩脉动。由于相电流在制动操作中沿相反方向流动,因此制动操作中的电流电路与电动机操作中的电流电路不同。因此,发现仅通过不需要三相调制的通常的制动脉冲宽度调制策略,就能够在从额定速度到零的速度范围内减小换向转矩脉动。但是,在电动机运行中是不可能的。在常见的制动脉冲宽度调制策略下,得出并比较了可以减小换向转矩脉动的速度范围。基于对这些速度范围的分析,提出了一种简单的制动方法。通过这种方法,可以在无制动转矩波动的情况下,从额定速度到零的整个制动过程中降低BLDCM的速度。实验结果验证了该方法的有效性和理论的正确性。

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