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Commutation Torque-ripple Minimization for Brushless DC Motor Based on Quasi-Z-Source Inverter

机译:基于准Z源逆变器的无刷直流电动机换相转矩脉动最小化

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Conventional brushless DC Motor (BLDCM) drive involves a voltage-source inverter with six-step squarewave control, which can be widely used in automated industrial applications. However, high torque ripple due to different current slew rates during the commutation interval would significantly reduce the performance in the high-precision area. To tackle this problem, the paper proposes a novel strategy to reduce the commutation torque-ripple by using a quasi-Z-source inverter. In which, an impedance network is implemented between the power supply and the voltage-source inverter. This could make the equivalent DC-link voltage boosted during the commutation interval to compensate the current dip of commutation phase, and keep incoming and outgoing phase current changing at the same rate. In Matlab/Simulink environment, proposed scheme is developed and simulated. Finally, the effectiveness of the proposed control strategy is validated, the torque ripple can be greatly reduced and with the increased average torque.
机译:常规的无刷直流电动机(BLDCM)驱动器包括具有六步方波控制的电压源逆变器,可广泛用于自动化工业应用中。但是,由于换向间隔中电流摆率不同而导致的高转矩脉动会大大降低高精度区域的性能。为了解决这个问题,本文提出了一种通过使用准Z源逆变器来减小换向转矩脉动的新颖策略。其中,在电源和电压源逆变器之间实现了阻抗网络。这可以使等效直流母线电压在换向间隔期间升高,以补偿换相相位的电流骤降,并使输入和输出相位电流以相同的速率变化。在Matlab / Simulink环境中,提出并仿真了所提出的方案。最后,验证了所提出的控制策略的有效性,可以极大地减小转矩脉动,并随着平均转矩的增加而减小转矩脉动。

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