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A Simplified Finite-State Predictive Direct Torque Control for Induction Motor Drive

机译:感应电动机驱动器的简化有限状态预测直接转矩控制

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Finite-state predictive torque control (FS-PTC) is computationally expensive, since it uses all voltage vectors (VVs) available from a power converter for prediction and actuation. The computational burden is rapidly increased with the number of VVs and objectives to be controlled. Moreover, designing a cost function with more than two control objectives is a complex task. This paper proposes a simplified algorithm based on a new direct torque control (DTC) switching table to reduce the number of VVs to be predicted and objectives to be controlled. The new switching table also assists to reduce average switching frequency and its variation range. As a result, the cost function is simplified by not requiring to include the frequency term. Experimental results show that the average execution time and the average switching frequency for the proposed algorithm are greatly reduced without affecting the torque and flux performances achieved in the conventional FS-PTC.
机译:有限状态预测转矩控制(FS-PTC)在计算上很昂贵,因为它使用功率转换器提供的所有电压矢量(VV)进行预测和驱动。随着VV和要控制的目标数量的增加,计算负担迅速增加。此外,设计具有两个以上控制目标的成本函数是一项复杂的任务。本文提出了一种基于新的直接转矩控制(DTC)切换表的简化算法,以减少要预测的VV数量和要控制的目标。新的开关表还有助于降低平均开关频率及其变化范围。结果,由于不需要包括频率项,简化了成本函数。实验结果表明,在不影响传统FS-PTC的转矩和磁通性能的前提下,该算法的平均执行时间和平均切换频率大大降低。

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