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Commutation-Torque-Ripple Minimization in Direct-Torque-Controlled PM Brushless DC Drives

机译:直接转矩控制的PM无刷直流变频器中的换向转矩纹波最小化

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This paper describes an improved implementation of direct torque control (DTC) to a permanent-magnet brushless dc (BLDC) drive. The commutation torque ripple, which occurs every 60$^{circ}$ elec. in a conventional three-phase BLDC machine with two-phase 120 $^{circ}$ elec. conduction, is reduced by employing a hybrid two- and three-phase switching mode during the commutation periods. It is based on the criterion of minimizing the error between the commanded torque and the estimated torque and does not require knowledge of the conduction duration of the three-phase switching mode. It adaptively adjusts the phase-current waveform to maintain constant electromagnetic torque so that commutation torque ripple, which would have resulted with conventional DTC, particularly at high rotational speeds, is effectively eliminated, as confirmed by both simulations and measurements.
机译:本文介绍了对永磁无刷直流(BLDC)驱动器直接转矩控制(DTC)的改进实现。换向转矩波动,每60ec产生一次。在传统的三相BLDC电机中具有两相120 $通过在换向期间采用混合的两相和三相开关模式,可以减少导通。它基于最小化命令转矩和估算转矩之间的误差的标准,并且不需要了解三相开关模式的导通持续时间。它可以自适应地调整相电流波形以保持恒定的电磁转矩,从而有效消除了传统DTC(特别是在高转速下)产生的换向转矩脉动,这已通过仿真和测量得到了证实。

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