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A Novel Direct Torque and Flux Control Method of Matrix Converter-Fed PMSM Drives

机译:矩阵变换器馈送的PMSM驱动器的新型直接转矩和磁通控制方法

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摘要

A novel direct torque and flux control strategy is proposed for matrix converter (MC)-based permanent-magnet synchronous motor (PMSM) drive systems. The proposed method allows the use of all MC switching states including the rotation vectors, and effectively controls input and output variables of the MC. Mapping relationships between MC output voltage vectors and change rates of motor torque and flux, and those between MC input current vectors and change rates of grid reactive charge are derived. Then, four enhanced switching tables are established by means of discretizing and averaging, in which changes of torque, flux and input reactive charge corresponding to all MC switching states can be shown explicitly. Based on the tables, an optimal selection of switching states can be achieved by the proposed method. Numerical simulations and experiments with a prototype are carried out. The results show good performance of the proposed method with small torque and flux ripples, low distortion input currents, and fast dynamic response.
机译:针对基于矩阵变换器(MC)的永磁同步电动机(PMSM)驱动系统,提出了一种新颖的直接转矩和磁通控制策略。所提出的方法允许使用包括旋转矢量的所有MC切换状态,并且有效地控制MC的输入和输出变量。推导了MC输出电压矢量与电动机转矩和磁通变化率之间的映射关系,以及MC输入电流矢量与电网无功电荷变化率之间的映射关系。然后,通过离散化和平均化建立四个增强的切换表,其中可以明确显示与所有MC切换状态相对应的转矩,磁通和输入无功电荷的变化。基于这些表,通过所提出的方法可以实现开关状态的最佳选择。用原型进行了数值模拟和实验。结果表明,该方法具有良好的性能,扭矩和磁通波动小,输入电流失真小,动态响应快。

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