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A New Approach of Minimizing Commutation Torque Ripple for Brushless DC Motor Based on DC–DC Converter

机译:基于DC-DC转换器的无刷直流电动机换相转矩脉动最小化的新方法

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Brushless dc motor still suffers from commutation torque ripple, which mainly depends on speed and transient line current in the commutation interval. This paper presents a novel circuit topology and a dc link voltage control strategy to keep incoming and outgoing phase currents changing at the same rate during commutation. A dc–dc single-ended primary inductor converter (SEPIC) and a switch selection circuit are employed in front of the inverter. The desired commutation voltage is accomplished by the SEPIC converter. The dc link voltage control strategy is carried out by the switch selection circuit to separate two procedures, adjusting the SEPIC converter and regulating speed. The cause of commutation ripple is analyzed, and the way to obtain the desired dc link voltage is introduced in detail. Finally, simulation and experimental results show that, compared with the dc–dc converter, the proposed method can obtain the desired voltage much faster and minimize commutation torque ripple more efficiently at both high and low speeds.
机译:无刷直流电动机仍会遭受换向转矩脉动,这主要取决于换向间隔中的速度和瞬态线电流。本文提出了一种新颖的电路拓扑结构和直流链路电压控制策略,以使输入和输出相电流在换向期间保持相同的速率变化。逆变器前部采用了一个dc-dc单端初级电感器转换器(SEPIC)和一个开关选择电路。所需的换向电压由SEPIC转换器实现。直流链路电压控制策略由开关选择电路执行,以分离两个过程,即调整SEPIC转换器和调节速度。分析了换向纹波的原因,并详细介绍了获得所需直流母线电压的方法。最后,仿真和实验结果表明,与dc-dc转换器相比,该方法可以更快地获得所需的电压,并在高速和低速时均能更有效地最小化换向转矩纹波。

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