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Flux-weakening control performance of partitioned stator switched flux PM machines

机译:分段定子开关磁通永磁电机的弱磁通控制性能

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This paper firstly investigates the flux-weakening control performance of two types of new partitioned stator switched flux permanent magnet (PM) (PS-SFPM) machines and then proposes a novel mechanical flux-weakening technique. The PS-SFPM machine topologies, operation principles and flux weakening control methods are described. In addition, it is shown that by mechanically varying the relative position of two stators of the PS-SFPM machine, the PM flux-linkage can also be varied and hence it can provide improvement of the speed range and torque capability. The optimal relative mechanical angle is derived to enable the maximum torque capability and reduce or even avoid the flux-weakening current injected by the inverter. The proposed technique is verified by 2-dimensional (2D) finite element (FE) analyses and experiments on the prototype machines.
机译:本文首先研究了两种新型的分区定子开关磁通永磁体(PS-SFPM)电机的弱磁控制性能,然后提出了一种新颖的机械弱磁技术。描述了PS-SFPM机器的拓扑,工作原理和磁通弱化控制方法。另外,示出了通过机械地改变PS-SFPM机器的两个定子的相对位置,还可以改变PM磁链,因此可以改善速度范围和扭矩能力。推导出最佳相对机械角度,以实现最大扭矩能力,并减少甚至避免逆变器注入的弱磁电流。通过在原型机上进行二维(2D)有限元(FE)分析和实验,验证了所提出的技术。

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