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Model Predictive Direct Torque Control With Finite Control Set for PMSM Drive Systems, Part 2: Field Weakening Operation

机译:带有有限控制集的PMSM驱动系统的模型预测直接转矩控制,第2部分:弱磁场操作

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The direct torque control approach called model predictive direct torque control (MP-DTC) is extended to field-weakening operation in this research. The controller is of the finite control set (FCS) type, which takes the discrete states of the voltage source inverter (VSI) into account. Each sampling period, the future behavior of the plant is predicted and inputs (voltage vectors) are selected using an optimization criterion, i.e., a cost function. Optimization, however, depend on the operation region. Maximum torque per ampere (MTPA) tracking for high electrical efficiency is aimed below rated speed, operation off the MTPA trajectory is necessary for obtaining field-weakening. In this work, a cost function is designed, which is suitable for operation at high speeds without penalizing operation below rated speed. MP-DTC is applied to permanent magnet synchronous machine (PMSM) drive systems. High control performances, i.e., dynamics, is obtained without increasing the switching frequency nor reducing significantly the torque quality. This feature is interesting above all for high power applications. The proposed control strategy has been evaluated on a small-scale (PMSM) drive system with two-level VSI for demonstration showing promising results.
机译:在本研究中,称为模型预测直接转矩控制(MP-DTC)的直接转矩控制方法扩展到了弱磁场操作。控制器属于有限控制集(FCS)类型,它考虑了电压源逆变器(VSI)的离散状态。在每个采样周期中,将预测工厂的未来行为,并使用优化准则(即成本函数)选择输入(电压矢量)。但是,优化取决于操作区域。跟踪高电效率的最大每安培转矩(MTPA)的目标是低于额定速度,为了获得弱磁场,必须在MTPA轨迹上运行。在这项工作中,设计了一种成本函数,该函数适用于高速运行而不会在低于额定速度的情况下损害运行。 MP-DTC适用于永磁同步电机(PMSM)驱动系统。在不增加开关频率也不显着降低转矩质量的情况下获得了高控制性能,即动态性能。对于高功率应用而言,此功能首先很有趣。拟议的控制策略已在具有两级VSI的小型(PMSM)驱动系统上进行了评估,以进行演示,展示出可喜的结果。

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