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Dual-mode switching technique for reduction of commutation torque ripple of brushless dc motor

机译:降低无刷直流电动机换向转矩脉动的双模切换技术

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In this study, the reduction of commutation torque ripple because of phase commutation of brushless dc (BLDC) motor is described. In a conventional three-phase BLDC machine with 120u000b0; electrical conduction, commutation torque ripple occurs because of changeover of load current from one phase to another at every 60 electrical degrees. Similar is the case for 180u000b0; conduction mode because of change of phase currents at 60u000b0; intervals. A detailed analysis shown in this study reveals that the torque ripple reduces for 180u000b0; switching mode at higher speeds because of reduction of both torque ripple magnitude and commutation time, compared to the 120u000b0; conduction mode of the inverter. In this study, a dual-mode switching technique is proposed to optimise the commutation torque ripple of the machine. Suitable computer simulations and experiments are performed to validate the proposed concept.
机译:在这项研究中,描述了由于无刷直流(BLDC)电动机的相位换向而导致的换向转矩脉动的减小。在具有120u000b0的常规三相BLDC机器中;电导通时,由于负载电流每60电角度从一相转换到另一相,会产生换向转矩脉动。 180u000b0的情况与此类似;导通模式,因为相电流在60u000b0处变化;间隔。这项研究中显示的详细分析表明,转矩脉动减小了180u000b0;与120u000b0相比,由于减小了转矩纹波幅度和换向时间,因此可以在较高速度下切换模式;逆变器的传导模式。在这项研究中,提出了一种双模式切换技术来优化电机的换向转矩脉动。进行适当的计算机模拟和实验以验证所提出的概念。

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