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A Novel Direct Torque Control of Matrix Converter-Fed PMSM Drives Using Dynamic Sector Boundary for Common-Mode Voltage Minimization

机译:使用动态扇区边界进行共模电压最小化矩阵转换器供给PMSM驱动的新型直接扭矩控制

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摘要

In this article, a novel direct torque control (DTC) using dynamic sector boundary is proposed for a matrix converter (MC) fed permanent magnet synchronous motor drive system in order to minimize common-mode voltage (CMV) of the system, based on the fact that rotating vectors produce zero CMV. According to the feature of rotating vectors that their relative position varies with the varying of the phase of input voltage, the vector plane is divided into sectors with dynamic boundaries, and the rotating vectors are redenoted dynamically. A novel switching table and a mapping table of rotating vectors are established according to the control effects of each rotating vector in each sector, and DTC with only rotating vectors is achieved. Experiments with a 2-kW prototype are carried out. The results show that adequate dynamic performance and considerable CMV reduction is achieved by using the novel MC-DTC.
机译:在本文中,提出了一种新的直接扭矩控制(DTC),用于矩阵转换器(MC)Fed永磁同步电动机驱动系统,以最小化系统的共模电压(CMV),基于旋转矢量产生零CMV的事实。根据旋转向量的特征,使得它们的相对位置随着输入电压的相位而变化,矢量平面被分成带有动态边界的扇区,并且旋转矢量被动态地重新插入。根据每个扇区中的每个旋转向量的控制效果建立新颖的切换台和旋转矢量的映射表,并且仅实现具有旋转矢量的DTC。进行了2 kW原型的实验。结果表明,通过使用新颖的MC-DTC实现了足够的动态性能和相当大的CMV降低。

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