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首页> 外文期刊>Industrial Electronics, IEEE Transactions on >New Method to Eliminate Commutation Torque Ripple of Brushless DC Motor With Minimum Commutation Time
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New Method to Eliminate Commutation Torque Ripple of Brushless DC Motor With Minimum Commutation Time

机译:用最小换向时间消除无刷直流电动机换向转矩脉动的新方法

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摘要

Commutation torque ripple of brushless DC motor (BLDCM) is caused by the different current slew rates between switching-in phase and switching-out phase. If the slew rates were equal, commutation torque ripple could be eliminated. A simple full speed range method was presented in this paper to eliminate commutation torque ripple by dividing each pulsewidth modulation (PWM) period into three segments during commutation time. By selecting proper proportions of these three segments, the average current slew rate of switching-in phase can be kept equal with the average rate of switching-out phase in each PWM period. Because the commutation time is controllable in the presented method, commutation process which is bad for the operation of BLDCM can be finished in its highest speed. The theoretical derivation is given, the experimental results show that the commutation torque ripple can be eliminated in the minimum commutation time, and output power of BLDCM under rated load can be improved.
机译:无刷直流电动机(BLDCM)的换向转矩脉动是由切入相和切出相之间的电流压摆率不同引起的。如果压摆率相等,则可以消除换向转矩脉动。本文提出了一种简单的全速范围方法,通过在换向期间将每个脉宽调制(PWM)周期分为三个部分来消除换向转矩脉动。通过选择这三个部分的适当比例,可以使每个PWM周期内的平均切入电流转换率等于平均切出率。由于该方法可以控制换相时间,因此可以最大速度完成对BLDCM运行不利的换相过程。给出了理论推导,实验结果表明,在最短换向时间内可以消除换向转矩脉动,提高额定负载下无刷直流电动机的输出功率。

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