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Finite-State Predictive Torque Control of Induction Motor Supplied From a Three-Level NPC Voltage Source Inverter

机译:三电平NPC电压源逆变器提供的感应电动机的有限状态预测转矩控制

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Finite-state predictive torque control (FS-PTC) of an induction motor (IM) drive has been widely investigated for two-level voltage source inverter recently. This control method suffers from high and variable switching frequencies in a wide range, due to the limited number of available voltage vectors of the power converter. In order to take advantage of multilevel inverter drives which offer the benefits of low harmonic distortion of the stator currents, torque ripple, and low switching frequency, this paper proposes the integration of the FS-PTC with a three-level neutral-point clamped (3L-NPC) inverter driven IM drive. The drawback inherited from the topology of 3L-NPC voltage source inverter (VSI), such as neutral-point voltage, is easily handled by treating it as a variable to the cost function. Similarly, apart from the inverter topology itself, the average switching frequency is reduced further, and is maintained almost constant over a wide speed range. The effectiveness of the proposed FS-PTC in terms of torque and flux responses, capacitor voltage balancing, and low average switching frequency is validated through experimental results.
机译:最近,对于两电平电压源逆变器,已经广泛研究了感应电动机(IM)驱动器的有限状态预测转矩控制(FS-PTC)。由于功率转换器的可用电压矢量的数量有限,因此该控制方法在宽范围内遭受高且可变的开关频率的困扰。为了利用多级逆变器驱动器的优势,该驱动器具有定子电流的低谐波失真,转矩纹波和低开关频率的优点,本文提出将FS-PTC与三级中性点钳位( 3L-NPC)变频器驱动的IM驱动器。通过将3L-NPC电压源逆变器(VSI)的拓扑结构视为成本函数的变量,可以轻松解决其缺点,例如中性点电压。同样,除了逆变器拓扑本身之外,平均开关频率进一步降低,并且在很宽的速度范围内几乎保持恒定。通过实验结果验证了所提出的FS-PTC在转矩和磁通响应,电容器电压平衡以及低平均开关频率方面的有效性。

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