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Reduction of unbalanced axial magnetic force in post-fault operation of a novel six-phase double-stator axial flux PM machine using model predictrive control

机译:使用模型预测控制减少新型六相双定子轴向磁通永磁电机故障后运行中的不平衡轴向磁力

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This paper investigated the post-fault operation of a novel six-phase double-stator axial flux permanent magnet machine with detached winding configuration, which was found to be superior to existing winding configuration in previous study. However, the unbalanced magnetic force problem still remains unsolved. In this paper, the axial force balancing control principle is proposed and a group of specific current waveforms are deduced. When applying these currents under post-fault condition, magnetic torque, axial magnetic force and rotor losses of the machine are calculated in finite element analysis. The results are compared with normal condition and commonly-used post-fault current waveforms. It is verified that this method reduced the unbalanced axial magnetic force immensely and the torque ripple was also kept at a low level. In order to achieve the proposed current waveform, finite control set model predictive control (FCS-MPC) is adopted. This paper proposed the post-fault model of dual three-phase permanent magnet machines and designed a cost function to track the desired current waveforms. The model of the machine is used to predict the future behavior of the controlled variables and the cost function decides the next step of the inverter by evaluating all the predictions. At last, it is verified by simulation results that the control strategy performs well in both dynamic and steady-state situations.
机译:本文研究了一种新颖的具有分离绕组配置的六相双定子轴向磁通永磁电机的故障后操作,在先前的研究中发现该电机优于现有的绕组配置。但是,不平衡的磁力问题仍然没有解决。本文提出了轴向力平衡控制原理,推导了一组特定的电流波形。在故障后条件下施加这些电流时,将在有限元分析中计算出电机的磁转矩,轴向磁力和转子损耗。将结果与正常情况和常用的故障后电流波形进行比较。验证了该方法可以极大地减小不平衡的轴向磁力,并且转矩脉动也保持在较低水平。为了获得建议的电流波形,采用了有限控制集模型预测控制(FCS-MPC)。本文提出了双三相永磁电机的故障后模型,并设计了一个代价函数来跟踪所需的电流波形。机器模型用于预测受控变量的未来行为,成本函数通过评估所有预测来确定逆变器的下一步。最后,通过仿真结果验证了该控制策略在动态和稳态情况下均表现良好。

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