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Hysteresis current controller for a general ;7;-level inverter fed drive with online current error boundary computation and nearly constant switching frequency

机译:磁滞电流控制器,用于一般的; 7电平逆变器馈电驱动,具有在线电流误差边界计算和接近恒定的开关频率

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摘要

A space vector-based hysteresis current controller for any general n-level three phase inverter fed induction motor drive is proposed in this study. It offers fast dynamics, inherent overload protection and low harmonic distortion for the phase voltages and currents. The controller performs online current error boundary calculations and a nearly constant switching frequency is obtained throughout the linear modulation range. The proposed scheme uses only the adjacent voltage vectors of the present sector, similar to space vector pulse-width modulation and exhibits fast dynamic behaviour under different transient conditions. The steps involved in the boundary calculation include the estimation of phase voltages from the current ripple, computation of switching time and voltage error vectors. Experimental results are given to show the performance of the drive at various speeds, effect of sudden change of the load, acceleration, speed reversal and validate the proposed advantages.
机译:在这项研究中,提出了一种基于空间矢量的磁滞电流控制器,该控制器适用于任何一般的n级三相逆变器供电的感应电动机驱动器。它为相电压和电流提供快速动态特性,固有的过载保护和低谐波失真。控制器执行在线电流误差边界计算,并在整个线性调制范围内获得接近恒定的开关频率。所提出的方案仅使用当前扇区的相邻电压矢量,类似于空间矢量脉冲宽度调制,并且在不同的瞬态条件下表现出快速的动态行为。边界计算所涉及的步骤包括根据电流纹波估算相电压,计算开关时间和电压误差矢量。实验结果表明了该驱动器在各种速度下的性能,负载突然变化的影响,加速度,速度反转,并验证了所提出的优点。

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    《Power Electronics, IET》 |2013年第8期|1640-1649|共10页
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