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A Flux Constrained Predictive Control for a Six-Phase PMSM Motor With Lower Complexity

机译:具有较低复杂度的六相PMSM电机的磁通约束预测控制

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摘要

This paper proposes a low-complexity model predictive flux control (MPFC) with current harmonics and torque ripple reduced for a six-phase permanent magnet synchronous machine (PMSM) motor. First, the virtual vectors in two different magnitudes are adopted for the sake of harmonic currents and torque ripple reduction, as well as simplifying the predictive model by eliminating the z(1)-z(2) variables fromthe cost function. Then, a look-up table is developed to exclude the useless voltage vectors in advance. In this way, the number of prediction vectors is reduced and heavy computation burden is alleviated. Moreover, to avoid the tedious tuning work of the weighting factor in the cost function, the torque and flux amplitude are transformed into an equivalent reference flux vector. Thus, the complexity of the cost function is significantly reduced. Meanwhile, the current and torque performance are highly improved using the proposed method. Also, the fast dynamic response of predictive control is retained. Finally, simulation and experimental results are offered to verify the effectiveness of the proposed MPFC method.
机译:本文提出了一种用于六相永磁同步电机(PMSM)的低复杂度模型预测磁通量控制(MPFC),可降低电流谐波和转矩脉动。首先,为了谐波电流和转矩脉动的减少,采用两个不同大小的虚拟矢量,并通过从成本函数中消除z(1)-z(2)变量来简化预测模型。然后,建立查找表以预先排除无用的电压矢量。以此方式,减少了预测向量的数量并且减轻了繁重的计算负担。此外,为了避免在成本函数中繁琐的加权因子调整工作,将转矩和磁通幅度转换为等效参考磁通矢量。因此,显着降低了成本函数的复杂性。同时,使用所提出的方法极大地改善了电流和转矩性能。而且,保留了预测控制的快速动态响应。最后,通过仿真和实验结果验证了所提出的MPFC方法的有效性。

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