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Torque Ripple Minimization of Predictive Torque Control for PMSM With Extended Control Set

机译:具有扩展控制集的PMSM预测转矩控制的转矩波动最小化

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To reduce the steady-state torque ripples for permanent-magnet synchronous motor drives with predictive torque control (PTC), this paper proposes a modified PTC algorithm based on the extended control set (ECS-PTC). In the proposed algorithm, more candidate voltage vectors are extended to the control set, which forms the ECS, and then, the torque control precision could be improved and the torque ripples will be reduced. More attractive thing is that a new voltage vector synthesis method is deigned in ECS-PTC, and the corresponding predictive model and cascaded predictive algorithm are set up on the basis of this method. With the help of them, the optimal vector can be selected from ECS in a shorter control period of time, and its amplitude is also optimized at the same time to achieve high-precision control effects for torque and flux. In addition, the three-phase duty ratios of the output vector can be determined in ECS-PTC directly, without the help of space vector pulse width modulation. The experimental results show that ECS-PTC has excellent dynamic torque performance, and it also has more stable torque control performance and better execution efficiency at the same time.
机译:为了减少带有预测转矩控制(PTC)的永磁同步电动机驱动器的稳态转矩脉动,本文提出了一种基于扩展控制集(ECS-PTC)的改进PTC算法。该算法将更多的候选电压矢量扩展到控制集上,形成了ECS,从而可以提高转矩控制精度,减少转矩脉动。更具吸引力的是,在ECS-PTC中设计了一种新的电压矢量合成方法,并在此方法的基础上建立了相应的预测模型和级联预测算法。借助它们,可以在更短的控制时间内从ECS中选择最佳矢量,并且还可以同时优化其幅度,以实现对转矩和磁通的高精度控制效果。此外,无需借助空间矢量脉冲宽度调制,即可在ECS-PTC中直接确定输出矢量的三相占空比。实验结果表明,ECS-PTC具有优异的动态转矩性能,同时具有更稳定的转矩控制性能和更好的执行效率。

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