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Hardware implementation of Predictive Torque Controlled Open-end winding induction motor drive with self-tuning algorithm

机译:带有自整定算法的预测转矩控制开放式绕组感应电动机驱动器的硬件实现

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AbstractPredictive Torque Control (PTC) is an acceptable alternate to Direct Torque Control (DTC) of induction motors. The limitation of classical PTC is selection of weighting factor, improper selection of weighting factors lead to distortions in current, voltage, high torque and flux ripple. In classical PTC, to reduce torque and flux ripples manual tuning of weighting factors is needed and weighting factors are selected empirically. To circumvent tedious tuning process of weighting factor, this article proposes a new self-tuned PTC algorithm to Open End Winding Induction Motor (OEWIM) drive. OEWIM’s are more popular in electric vehicles, ship propulsion but they require ripple free torque. A new self-tuned PTC algorithm is implemented to OEWIM with multi-level inversion to reduce torque and flux ripples. The effectiveness of proposed PTC algorithm was tested by applying it to multi-level inverter fed OEWIM drive through simulation and experimental verification.
机译:摘要预测转矩控制(PTC)是感应电动机直接转矩控制(DTC)的可接受替代方法。传统PTC的局限性是选择权重系数,权重系数选择不当会导致电流,电压,高转矩和磁通纹波失真。在经典PTC中,为了减少转矩和磁通波动,需要手动调整加权因子,并根据经验选择加权因子。为了避免繁琐的加权系数调整过程,本文提出了一种新的自校正PTC算法,用于开放式绕组感应电动机(OEWIM)驱动器。 OEWIM在电动汽车,船舶推进中更受欢迎,但它们需要无脉动转矩。一种新的自调整PTC算法在OEWIM上实现了多级反转,以减少转矩和磁通波动。通过仿真和实验验证,将所提出的PTC算法应用于多电平逆变器OEWIM驱动器中,以验证其有效性。

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