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A Torque Control Strategy for Torque Ripple Reduction of Brushless DC Motor With Nonideal Back Electromotive Force

机译:具有非理想反电动势的无刷直流电动机转矩减小的转矩控制策略

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摘要

This paper proposes a new torque control strategy to reduce torque ripple of brushless dc motor. All possible combinations of terminal voltages are obtained from different switching states of the inverter during normal conduction period and commutation period. Moreover, the expressions of torque variation rates, corresponding to different terminal voltages, are derived to analyze the sign and the magnitude of the torque variation rates. Based on this analysis, two switching tables with main vector (MV) and subsidiary vector (SV) in these two periods are established, respectively. Through the combined effect of MV and SV in each control cycle, the torque ripple caused by both nonideal back electromotive force and current commutation can be reduced effectively. Meanwhile, dynamic performance of torque and switching times are taken into account. Especially in the commutation period, a unified vector selection table is applied over the entire speed range without distinguishing high speed and low speed. Finally, the effectiveness of the proposed strategy is verified by experimental results.
机译:本文提出了一种新的转矩控制策略,以减少无刷直流电动机的转矩脉动。在正常导通期间和换向期间,可以从逆变器的不同开关状态获得端电压的所有可能组合。此外,推导对应于不同端子电压的转矩变化率的表达式,以分析转矩变化率的符号和大小。基于此分析,分别建立了两个周期中两个主向量(MV)和辅助向量(SV)的切换表。通过在每个控制周期中MV和SV的组合作用,可以有效地减少由非理想反电动势和电流换向引起的转矩脉动。同时,考虑了转矩的动态性能和切换时间。特别是在换向期间,在不区分高速和低速的情况下,在整个速度范围上应用统一的向量选择表。最后,实验结果验证了所提策略的有效性。

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