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Reduction of Unbalanced Axial Magnetic Force in Postfault Operation of a Novel Six-Phase Double-Stator Axial-Flux PM Machine Using Model Predictive Control

机译:基于模型预测控制的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减小

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摘要

This paper investigates the postfault operation of a novel six-phase double-stator axial-flux permanent-magnet machine with detached winding connection. In previous research, this configuration was found to be superior to existing winding connection except that its unbalanced magnetic force in the postfault operation cannot be ignored. In this paper, an axial magnetic force balancing method (AMFBM) is proposed to reduce unbalanced magnetic force by deducing a set of special winding current. By comparing electromagnetic torque and axial magnetic force of the traditional winding current and the proposed method in postfault operations through a finite-element analysis, it is verified that AMFBM can reduce most of the unbalanced axial magnetic force as well as keeping torque ripple at a low level. In order to realize the AMFBM, finite control set model predictive control is adopted. A postfault model of dual-three-phase permanent-magnet machines with modified vector space decomposition method is first brought forward to predict the future behavior of the controlled variables with various voltage inputs. After that, a cost function is designed to track the desired winding current by evaluating all the predictions to decide the next step of the inverter. Experimental results show that the control scheme performs well in both dynamic and steady-state situations.
机译:本文研究了一种新型的分离绕组连接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,发现这种配置优于现有的绕组连接,除了在故障后操作中其不平衡的磁力不容忽视。本文提出了一种轴向磁力平衡方法(AMFBM),通过推导一组特殊绕组电流来减少不平衡磁力。通过有限元分析比较传统绕组电流和拟议方法在故障后操作中的电磁转矩和轴向磁力,可以证明AMBFM可以减少大部分不平衡轴向磁力,并且可以将转矩脉动保持在较低水平水平。为了实现AMBFM,采用了有限控制集模型预测控制。首先提出了修正矢量空间分解方法的双三相永磁电机故障后模型,以预测各种电压输入下受控变量的未来行为。此后,通过评估所有预测来决定逆变器的下一步,设计成本函数来跟踪所需的绕组电流。实验结果表明,该控制方案在动态和稳态情况下均表现良好。

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