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A comparison of indirect matrix converter based open-end winding drives against state-of-the-art

机译:基于间接矩阵转换器的间接矩阵变换器对现有技术的比较

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Voltage source inverters (VSIs) are used in electric drives to generate a variable frequency, variable amplitude voltage for motor control. In addition to the desired three-phase output voltage, VSIs also generate high-frequency common-mode voltage that causes shaft voltage and stray currents; that in turn cause EMI and motor failure. VSIs also need a stable DC voltage input that is generated from a rectifier or an active frontend converter. In contrast matrix converter (MC) based open-end winding (OE Wdg.) drives offer direct AC/AC conversion, thus eliminating the large capacitor in the VSI based system's DC-link. When modulated exclusively using rotating vectors, the MC based OE Wdg. drives do not generate any common-mode voltage, thus eliminating a major cause of motor failure. The advantages offered by the MC based solution require more semiconductor switches but less reactive components. To choose between this solution and the state-of-the-art, the input/output waveform quality, passive component requirements, and the total losses of several different solutions are evaluated in this paper. Special attention has been paid to the output common-mode voltage related phenomenon since common-mode elimination is the primary motivation for employing modulation using rotating vectors and an open-end winding drive topology.
机译:电压源逆变器(VSI)用于电动驱动器以产生可变频率,可变变压电压,用于电机控制。除了所需的三相输出电压外,VSI还产生了导致轴电压和杂散电流的高频共模电压;反过来导致EMI和电机故障。 VSIS还需要稳定的直流电压输入,该输入由整流器或主动前端转换器产生。在对比度矩阵转换器(MC)的开口绕组(OE WDG。)驱动器提供直接AC / AC转换,从而消除了基于VSI的系统的DC链路中的大电容。当专门使用旋转向量调制时,基于MC的OE WDG。驱动器不会产生任何共模电压,从而消除了电机故障的主要原因。基于MC的解决方案提供的优点需要更多的半导体开关,而是更少的反应性分量。在本文中选择该解决方案和最先进的,输入/输出波形质量,无源元件要求和几种不同解决方案的总损耗。由于共模消除是使用旋转向量和开口绕组驱动拓扑的采用调制的主要动机来支付特殊的注意力。

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