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A sub-region based direct torque control method of matrix converter fed PMSM drive system

机译:基于矩阵转换器FED PMSM驱动系统的亚区域直扭矩控制方法

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In order to suppress the torque and flux ripples with direct torque control (DTC) method of matrix converter, this paper proposed a modified MC-DTC based on a sub-region fed permanent magnet synchronous motor (PMSM) drive systems. With the proposed method, According to amplitude of the output voltage vector of MC, output voltage vectors are divided into large, medium, small and zero vector these four vectors. Compared to the reference output vector meeting the requirements of torque and flux regulator, these discontinuous vectors have deviation. Based on the rules of the deviation between output voltage vectors and the reference, each sector of the output phase voltage vector divided three sub-regions, and determines the sub-region boundary by using a probability statistics method. By dividing the sub-regions, the suitable output voltage vectors can be selected according to the deviation as small as possible between output voltage vectors and the reference voltage vector. Experimental results prove that the proposed method can effectively reduce the torque and flux ripples while retaining the good dynamic performance and the control capacity of input power factor.
机译:为了抑制具有直接扭矩控制(DTC)的矩阵转换器的扭矩和焊剂波纹,本文提出了一种基于副区域供给永磁同步电动机(PMSM)驱动系统的改进的MC-DTC。利用所提出的方法,根据MC的输出电压矢量的幅度,输出电压矢量被分成大,介质,小和零向量这四个向量。与满足扭矩和磁通调节器的要求的参考输出矢量相比,这些不连续的矢量具有偏差。基于输出电压矢量与参考之间的偏差规则,输出相位电压矢量的每个扇区划分三个子区域,并使用概率统计方法来确定子区域边界。通过划分子区域,可以根据尽可能小的输出电压矢量和参考电压矢量之间小的偏差来选择合适的输出电压矢量。实验结果证明,该方法可以有效地降低扭矩和焊剂波纹,同时保持良好的动态性能和输入功率因数的控制能力。

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