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Predictive torque control of induction motor sensorless drive fed by a 3L-NPC inverter

机译:由3L-NPC逆变器提供的感应电动机无传感器驱动的预测转矩控制

摘要

A finite-state predictive torque control system for a speed-sensorless induction motor drive supplied from a three-level neutral-point clamped inverter is proposed. For sensorless operation, the controller requires estimated speed and rotor/stator flux. In this study, the rotor speed and the rotor flux are estimated accurately by using an extended Kalman filter. Due to the large number of available voltage vectors, the control algorithm for a multilevel inverter-fed drive is computationally expensive. As a consequence, the controller requires longer execution time that yields worse torque, flux, and speed responses, especially at low-speed. In order to reduce the computational burden, a reduced number of voltage vectors for prediction and optimization in the control algorithm is proposed in this paper. The sign of the stator flux deviation and the position of the stator flux are predicted to lessen the number of voltage vectors tested. Experimental results illustrate that the proposed encoderless strategy can estimate the speed accurately over a wide speed range including field-weakening region while maintaining robustness and excellent torque and flux responses.
机译:提出了一种由三电平中性点钳位逆变器提供的无速度传感器感应电动机驱动器的有限状态预测转矩控制系统。对于无传感器操作,控制器需要估算的速度和转子/定子磁通。在这项研究中,使用扩展的卡尔曼滤波器可准确估算转子速度和转子磁通。由于大量可用电压矢量,用于多级逆变器馈电驱动器的控制算法在计算上非常昂贵。结果,控制器需要更长的执行时间,这会导致更差的转矩,磁通和速度响应,尤其是在低速时。为了减轻计算负担,提出了一种减少电压矢量的预测和优化控制算法。可以预测定子磁通偏差的符号和定子磁通的位置,以减少测试的电压矢量的数量。实验结果表明,提出的无编码器策略可以在包括磁场减弱区域在内的较宽速度范围内准确估算速度,同时保持鲁棒性以及出色的转矩和磁通响应。

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